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Published by Robert Bruce at August 29th, 2023 , Revised On September 5, 2023

Biology Research Topics

Are you in need of captivating and achievable research topics within the field of biology? Your quest for the best biology topics ends right here as this article furnishes you with 100 distinctive and original concepts for biology research, laying the groundwork for your research endeavor.

Table of Contents

Our proficient researchers have thoughtfully curated these biology research themes, considering the substantial body of literature accessible and the prevailing gaps in research.

Should none of these topics elicit enthusiasm, our specialists are equally capable of proposing tailor-made research ideas in biology, finely tuned to cater to your requirements. 

Thus, without further delay, we present our compilation of biology research topics crafted to accommodate students and researchers.

Research Topics in Marine Biology

  • Impact of climate change on coral reef ecosystems.
  • Biodiversity and adaptation of deep-sea organisms.
  • Effects of pollution on marine life and ecosystems.
  • Role of marine protected areas in conserving biodiversity.
  • Microplastics in marine environments: sources, impacts, and mitigation.

Biological Anthropology Research Topics

  • Evolutionary implications of early human migration patterns.
  • Genetic and environmental factors influencing human height variation.
  • Cultural evolution and its impact on human societies.
  • Paleoanthropological insights into human dietary adaptations.
  • Genetic diversity and population history of indigenous communities.

Biological Psychology Research Topics 

  • Neurobiological basis of addiction and its treatment.
  • Impact of stress on brain structure and function.
  • Genetic and environmental influences on mental health disorders.
  • Neural mechanisms underlying emotions and emotional regulation.
  • Role of the gut-brain axis in psychological well-being.

Cancer Biology Research Topics 

  • Targeted therapies in precision cancer medicine.
  • Tumor microenvironment and its influence on cancer progression.
  • Epigenetic modifications in cancer development and therapy.
  • Immune checkpoint inhibitors and their role in cancer immunotherapy.
  • Early detection and diagnosis strategies for various types of cancer.

Also read: Cancer research topics

Cell Biology Research Topics

  • Mechanisms of autophagy and its implications in health and disease.
  • Intracellular transport and organelle dynamics in cell function.
  • Role of cell signaling pathways in cellular response to external stimuli.
  • Cell cycle regulation and its relevance to cancer development.
  • Cellular mechanisms of apoptosis and programmed cell death.

Developmental Biology Research Topics 

  • Genetic and molecular basis of limb development in vertebrates.
  • Evolution of embryonic development and its impact on morphological diversity.
  • Stem cell therapy and regenerative medicine approaches.
  • Mechanisms of organogenesis and tissue regeneration in animals.
  • Role of non-coding RNAs in developmental processes.

Also read: Education research topics

Human Biology Research Topics

  • Genetic factors influencing susceptibility to infectious diseases.
  • Human microbiome and its impact on health and disease.
  • Genetic basis of rare and common human diseases.
  • Genetic and environmental factors contributing to aging.
  • Impact of lifestyle and diet on human health and longevity.

Molecular Biology Research Topics 

  • CRISPR-Cas gene editing technology and its applications.
  • Non-coding RNAs as regulators of gene expression.
  • Role of epigenetics in gene regulation and disease.
  • Mechanisms of DNA repair and genome stability.
  • Molecular basis of cellular metabolism and energy production.

Research Topics in Biology for Undergraduates

  • 41. Investigating the effects of pollutants on local plant species.
  • Microbial diversity and ecosystem functioning in a specific habitat.
  • Understanding the genetics of antibiotic resistance in bacteria.
  • Impact of urbanization on bird populations and biodiversity.
  • Investigating the role of pheromones in insect communication.

Synthetic Biology Research Topics 

  • Design and construction of synthetic biological circuits.
  • Synthetic biology applications in biofuel production.
  • Ethical considerations in synthetic biology research and applications.
  • Synthetic biology approaches to engineering novel enzymes.
  • Creating synthetic organisms with modified functions and capabilities.

Animal Biology Research Topics 

  • Evolution of mating behaviors in animal species.
  • Genetic basis of color variation in butterfly wings.
  • Impact of habitat fragmentation on amphibian populations.
  • Behavior and communication in social insect colonies.
  • Adaptations of marine mammals to aquatic environments.

Also read: Nursing research topics

Best Biology Research Topics 

  • Unraveling the mysteries of circadian rhythms in organisms.
  • Investigating the ecological significance of cryptic coloration.
  • Evolution of venomous animals and their prey.
  • The role of endosymbiosis in the evolution of eukaryotic cells.
  • Exploring the potential of extremophiles in biotechnology.

Biological Psychology Research Paper Topics

  • Neurobiological mechanisms underlying memory formation.
  • Impact of sleep disorders on cognitive function and mental health.
  • Biological basis of personality traits and behavior.
  • Neural correlates of emotions and emotional disorders.
  • Role of neuroplasticity in brain recovery after injury.

Biological Science Research Topics: 

  • Role of gut microbiota in immune system development.
  • Molecular mechanisms of gene regulation during development.
  • Impact of climate change on insect population dynamics.
  • Genetic basis of neurodegenerative diseases like Alzheimer’s.
  • Evolutionary relationships among vertebrate species based on DNA analysis.

Biology Education Research Topics 

  • Effectiveness of inquiry-based learning in biology classrooms.
  • Assessing the impact of virtual labs on student understanding of biology concepts.
  • Gender disparities in science education and strategies for closing the gap.
  • Role of outdoor education in enhancing students’ ecological awareness.
  • Integrating technology in biology education: challenges and opportunities.

Biology-Related Research Topics

  • The intersection of ecology and economics in conservation planning.
  • Molecular basis of antibiotic resistance in pathogenic bacteria.
  • Implications of genetic modification of crops for food security.
  • Evolutionary perspectives on cooperation and altruism in animal behavior.
  • Environmental impacts of genetically modified organisms (GMOs).

Biology Research Proposal Topics

  • Investigating the role of microRNAs in cancer progression.
  • Exploring the effects of pollution on aquatic biodiversity.
  • Developing a gene therapy approach for a genetic disorder.
  • Assessing the potential of natural compounds as anti-inflammatory agents.
  • Studying the molecular basis of cellular senescence and aging.

Biology Research Topic Ideas

  • Role of pheromones in insect mate selection and behavior.
  • Investigating the molecular basis of neurodevelopmental disorders.
  • Impact of climate change on plant-pollinator interactions.
  • Genetic diversity and conservation of endangered species.
  • Evolutionary patterns in mimicry and camouflage in organisms.

Biology Research Topics for Undergraduates 

  • Effects of different fertilizers on plant growth and soil health.
  • Investigating the biodiversity of a local freshwater ecosystem.
  • Evolutionary origins of a specific animal adaptation.
  • Genetic diversity and disease susceptibility in human populations.
  • Role of specific genes in regulating the immune response.

Cell and Molecular Biology Research Topics 

  • Molecular mechanisms of DNA replication and repair.
  • Role of microRNAs in post-transcriptional gene regulation.
  • Investigating the cell cycle and its control mechanisms.
  • Molecular basis of mitochondrial diseases and therapies.
  • Cellular responses to oxidative stress and their implications in ageing.

These topics cover a broad range of subjects within biology, offering plenty of options for research projects. Remember that you can further refine these topics based on your specific interests and research goals.

Frequently Asked Questions 

What are some good research topics in biology?

A good research topic in biology will address a specific problem in any of the several areas of biology, such as marine biology, molecular biology, cellular biology, animal biology, or cancer biology.

A topic that enables you to investigate a problem in any area of biology will help you make a meaningful contribution. 

How to choose a research topic in biology?

Choosing a research topic in biology is simple. 

Follow the steps:

  • Generate potential topics. 
  • Consider your areas of knowledge and personal passions. 
  • Conduct a thorough review of existing literature.
  •  Evaluate the practicality and viability. 
  • Narrow down and refine your research query. 
  • Remain receptive to new ideas and suggestions.

Who Are We?

For several years, Research Prospect has been offering students around the globe complimentary research topic suggestions. We aim to assist students in choosing a research topic that is both suitable and feasible for their project, leading to the attainment of their desired grades. Explore how our services, including research proposal writing , dissertation outline creation, and comprehensive thesis writing , can contribute to your college’s success.

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49 Most Interesting Biology Research Topics

August 21, 2023

In need of the perfect biology research topics—ideas that can both showcase your intellect and fuel your academic success? Lost in the boundless landscape of possible biology topics to research? And afraid you’ll never get a chance to begin writing your paper, let alone finish writing? Whether you’re a budding biologist hoping for a challenge or a novice seeking easy biology research topics to wade into, this blog offers curated and comprehensible options.

And if you’re a high school or transfer student looking for opportunities to immerse yourself in biology, consider learning more about research opportunities for high school students , top summer programs for high school students , best colleges for studying biomedical engineering , and best colleges for studying biology .

What is biology?

Well, biology explores the web of life that envelops our planet, from the teeny-tiny microbes to the big complex ecosystems. Biology investigates the molecular processes that define existence, deciphers the interplay of genes, and examines all the dynamic ways organisms interact with their environments. And through biology, you can gain not only knowledge, but a deeper appreciation for the interconnectedness of all living things. Pretty cool!

There are lots and lots of sub-disciplines within biology, branching out in all directions. Throughout this list, we won’t follow all of those branches, but we will follow many. And while none of these branches are truly simple or easy, some might be easier than others. Now we’ll take a look at a few various biology research topics and example questions that could pique your curiosity.

Climate change and ecosystems

The first of our potentially easy biology research topics: climate change and ecosystems. Investigate how ecosystems respond and adapt to the changing climate. And learn about shifts in species distributions , phenology , and ecological interactions .

1) How are different ecosystems responding to temperature changes and altered precipitation patterns?2) What are the implications of shifts in species distributions for ecosystem stability and functioning?

2) Or how does phenology change in response to climate shifts? And how do those changes impact species interactions?

3) Which underlying genetic and physiological mechanisms enable certain species to adapt to changing climate conditions?

4) And how do changing climate conditions affect species’ abilities to interact and form mutualistic relationships within ecosystems?

Microbiome and human health

Intrigued by the relationship between the gut and the rest of the body? Study the complex microbiome . You could learn how gut microbes influence digestion, immunity, and even mental health.

5) How do specific gut microbial communities impact nutrient absorption?

6) What are the connections between the gut microbiome, immune system development, and susceptibility to autoimmune diseases?

7) What ethical considerations need to be addressed when developing personalized microbiome-based therapies? And how can these therapies be safely and equitably integrated into clinical practice?

8) Or how do variations in the gut microbiome contribute to mental health conditions such as anxiety and depression?

9) How do changes in diet and lifestyle affect the composition and function of the gut microbiome? And what are the subsequent health implications?

Urban biodiversity conservation

Next, here’s another one of the potentially easy biology research topics. Examine the challenges and strategies for conserving biodiversity in urban environments. Consider the impact of urbanization on native species and ecosystem services. Then investigate the decline of pollinators and its implications for food security or ecosystem health.

10) How does urbanization influence the abundance and diversity of native plant and animal species in cities?

11) Or what are effective strategies for creating and maintaining green spaces that support urban biodiversity and ecosystem services?

12) How do different urban design and planning approaches impact the distribution of wildlife species and their interactions?

13) What are the best practices for engaging urban communities in biodiversity conservation efforts?

14) And how can urban agriculture and rooftop gardens contribute to urban biodiversity conservation while also addressing food security challenges?

Bioengineering

Are you a problem solver at heart? Then try approaching the intersection of engineering, biology, and medicine. Delve into the field of synthetic biology , where researchers engineer biological systems to create novel organisms with useful applications.

15) How can synthetic biology be harnessed to develop new, sustainable sources of biofuels from engineered microorganisms?

16) And what ethical considerations arise when creating genetically modified organisms for bioremediation purposes?

17) Can synthetic biology techniques be used to design plants that are more efficient at withdrawing carbon dioxide from the atmosphere?

18) How can bioengineering create organisms capable of producing valuable pharmaceutical compounds in a controlled and sustainable manner?

19) But what are the potential risks and benefits of using engineered organisms for large-scale environmental cleanup projects?

Neurobiology

Interested in learning more about what makes creatures tick? Then this might be one of your favorite biology topics to research. Explore the neural mechanisms that underlie complex behaviors in animals and humans. Shed light on topics like decision-making, social interactions, and addiction. And investigate how brain plasticity and neurogenesis help the brain adapt to learning, injury, and aging.

20) How does the brain’s reward circuitry influence decision-making processes in situations involving risk and reward?

21) What neural mechanisms underlie empathy and social interactions in both humans and animals?

22) Or how do changes in neural plasticity contribute to age-related cognitive decline and neurodegenerative diseases?

23) Can insights from neurobiology inform the development of more effective treatments for addiction and substance abuse?

24) What are the neural correlates of learning and memory? And how can our understanding of these processes be applied to educational strategies?

Plant epigenomics

While this might not be one of the easy biology research topics, it will appeal to plant enthusiasts. Explore how epigenetic modifications in plants affect their ability to respond and adapt to changing environmental conditions.

25) How do epigenetic modifications influence the expression of stress-related genes in plants exposed to temperature fluctuations?

26) Or what role do epigenetic changes play in plants’ abilities to acclimate to changing levels of air pollution?

27) Can certain epigenetic modifications be used as indicators of a plant’s adaptability to new environments?

28) How do epigenetic modifications contribute to the transgenerational inheritance of traits related to stress resistance?

29) And can targeted manipulation of epigenetic marks enhance crop plants’ ability to withstand changing environmental conditions?

Conservation genomics

Motivated to save the planet? Conservation genomics stands at the forefront of modern biology, merging the power of genetics with the urgent need to protect Earth’s biodiversity. Study genetic diversity, population dynamics, and how endangered species adapt in response to environmental changes.

30) How does genetic diversity within endangered species influence their ability to adapt to changing environmental conditions?

31) What genetic factors contribute to the susceptibility of certain populations to diseases, and how can this knowledge inform conservation strategies?

32) How can genomic data be used to inform captive breeding and reintroduction programs for endangered species?

33) And what are the genomic signatures of adaptation in response to human-induced environmental changes, such as habitat fragmentation and pollution?

34) Or how can genomics help identify “hotspots” of biodiversity that are particularly important for conservation efforts?

Zoonotic disease transmission

And here’s one of the biology research topics that’s been on all our minds in recent years. Investigate the factors contributing to the transmission of zoonotic diseases , like COVID-19. Then posit strategies for prevention and early detection.

35) What are the ecological and genetic factors that facilitate the spillover of zoonotic pathogens from animals to humans?

36) Or how do changes in land use, deforestation, and urbanization impact the risk of zoonotic disease emergence?

37) Can early detection and surveillance systems be developed to predict and mitigate the spread of zoonotic diseases?

38) How do social and cultural factors influence human behaviors that contribute to zoonotic disease transmission?

39) And can strategies be implemented to improve global pandemic preparedness?

Bioinformatics

Are you a data fanatic? Bioinformatics involves developing computational tools and techniques to analyze and interpret large biological datasets. This enables advancements in genomics, proteomics, and systems biology. So delve into the world of bioinformatics to learn how large-scale genomic and molecular data are revolutionizing biological research.

40) How can machine learning algorithms predict the function of genes based on their DNA sequences?

41) And what computational methods can identify potential drug targets by analyzing protein-protein interactions in large biological datasets?

42) Can bioinformatics tools be used to identify potential disease-causing mutations in human genomes and guide personalized medicine approaches?

43) What are the challenges and opportunities in analyzing “omics” data (genomics, proteomics, transcriptomics) to uncover novel biological insights?

44) Or how can bioinformatics contribute to our understanding of microbial diversity, evolution, and interactions within ecosystems?

Regenerative medicine

While definitely not one of the easy biology research topics, regenerative medicine will appeal to those interested in healthcare. Research innovative approaches to stimulate tissue and organ regeneration, using stem cells, tissue engineering, and biotechnology. And while you’re at it, discover the next potential medical breakthrough.

45) How can stem cells be directed to differentiate into specific cell types for tissue regeneration, and what factors influence this process?

46) Or what are the potential applications of 3D bioprinting in creating functional tissues and organs for transplantation?

47) How can bioengineered scaffolds enhance tissue regeneration and integration with host tissues?

48) What are the ethical considerations surrounding the use of stem cells and regenerative therapies in medical treatments?

49) And can regenerative medicine approaches be used to treat neurodegenerative disorders and restore brain function?

Biology Research Topics – Final thoughts

So as you take your next steps, try not to feel overwhelmed. And instead, appreciate the vast realm of possibilities that biology research topics offer. Because the array of biology topics to research is as diverse as the ecosystems it seeks to understand. And no matter if you’re only looking for easy biology research topics, or you’re itching to unravel the mysteries of plant-microbe interactions, your exploration will continue to deepen what we know of the world around us.

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200+ Unique And Interesting Biology Research Topics For Students In 2023

Biology Research Topics

Are you curious about the fascinating world of biology and its many research possibilities? Well, you are in the right place! In this blog, we will explore biology research topics, exploring what biology is, what constitutes a good research topic, and how to go about selecting the perfect one for your academic journey.

So, what exactly is biology? Biology is the study of living organisms and their interactions with the environment. It includes everything from the tiniest cells to the largest ecosystems, making it a diverse and exciting field of study.

Stay tuned to learn more about biology research topics as we present over 200 intriguing research ideas for students, emphasizing the importance of selecting the right one. In addition, we will also share resources to make your quest for the perfect topic a breeze. Let’s embark on this scientific journey together!

If you are having trouble with any kind of assignment or task, do not worry—we can give you the best microbiology assignment help at a value price. Additionally, you may look at nursing project ideas .

What Is Biology?

Table of Contents

Biology is the study of living things, like animals, plants, and even tiny organisms too small to see. It helps us understand how these living things work and how they interact with each other and their environment. Biologists, or scientists who study biology, explore topics like how animals breathe, how plants grow, and how our bodies function. By learning about biology, we can better care for the Earth and all its living creatures.

What Is A Good Biology Research Topic?

A good biology research topic is a question or problem in the field of biology that scientists want to investigate and learn more about. It should be interesting and important, like studying how a new medicine can treat a disease or how animals adapt to changing environments. The topic should also be specific and clear, so researchers can focus on finding answers. Additionally, it’s helpful if the topic hasn’t been studied extensively before, so the research can contribute new knowledge to the field of biology and help us better understand the natural world.

Tips For Choosing A Biology Research Topics

Here are some tips for choosing a biology research topics:

1. Choose What Interests You

When picking a biology research topic, go for something that you personally find fascinating and enjoyable. When you’re genuinely curious about it, you’ll be more motivated to study and learn.

2. Select a Significant Topic

Look for a subject in biology that has real-world importance. Think about whether your research can address practical issues, like finding cures for diseases or understanding environmental problems. Research that can make a positive impact is usually a good choice.

3. Check If It’s Doable

Consider if you have the necessary tools and time to carry out your research. It’s essential to pick a topic that you can actually study with the resources available to you.

4. Add Your Unique Perspective

Try to find a fresh or different angle for your research. While you can build upon existing knowledge, bringing something new or unique to the table can make your research more exciting and valuable.

5. Seek Guidance

Don’t hesitate to ask for advice from your teachers or experienced researchers. They can provide you with valuable insights and help you make a smart decision when choosing your research topic in biology.

Biology Research Topics For College Students

1. Investigating the role of genetic mutations in cancer development.

2. Analyzing the impact of climate changes on wildlife populations.

3. Studying the ecology of invasive species in urban environments.

4. Investigating the microbiome of the human gut and its relationship to health.

5. Analyzing the genetic diversity of endangered species for conservation.

6. Studying the evolution of antibiotic resistance in bacteria.

7. Investigating the ecological consequences of deforestation.

8. Analyzing the behavior and communication of social insects like ants and bees.

9. Studying the physiology of extreme environments, such as deep-sea hydrothermal vents.

10. Investigating the molecular mechanisms of cell division and mitosis.

Plant Biology Research Topics For College Students

11. Studying the impact of different fertilizers on crop yields and soil health.

12. Analyzing the genetics of plant resistance to pests and diseases.

13. Investigating the role of plant hormones in growth and development.

14. Studying the adaptation of plants to drought conditions.

15. Analyzing the ecological interactions between plants and pollinators.

16. Investigating the use of biotechnology to enhance crop traits.

17. Studying the genetics of plant breeding for improved varieties.

18. Analyzing the physiology of photosynthesis and carbon fixation in plants.

19. Investigating the effects of soil microbiota on plant health.

20. Studying the evolution of plant species in response to changing environments.

Biotechnology Research Topics For College Students

21. Investigating the use of CRISPR-Cas9 technology for genome editing.

22. Analyzing the production of biofuels from microorganisms.

23. Studying the application of biotechnology in medicine, such as gene therapy.

24. Investigating the use of bioplastics as a sustainable alternative to conventional plastics.

25. Analyzing the role of biotechnology in food production, including GMOs.

26. Studying the development of biopharmaceuticals and monoclonal antibodies.

27. Investigating the use of bioremediation to clean up polluted environments.

28. Studying the potential of synthetic biology for creating novel organisms.

29. Analyzing the ethical and social implications of biotechnological advancements.

30. Investigating the use of biotechnology in forensic science, such as DNA analysis.

Molecular Biology Research Topics For Undergraduates

31. Studying the structure and function of DNA and RNA molecules.

32. Analyzing the regulation of gene expression in eukaryotic cells.

33. Investigating the mechanisms of DNA replication and repair.

34. Studying the role of non-coding RNAs in gene regulation.

35. Analyzing the molecular basis of genetic diseases like cystic fibrosis.

36. Investigating the epigenetic modifications that control gene activity.

37. Studying the molecular mechanisms of protein folding and misfolding.

38. Analyzing the molecular pathways involved in cancer progression.

39. Investigating the molecular basis of neurodegenerative diseases.

40. Studying the use of molecular markers in genetic diversity analysis.

Life Science Research Topics For High School Students

41. Investigating the effects of different diets on human health.

42. Analyzing the impact of exercise on cardiovascular fitness.

43. Studying the genetics of inherited traits and diseases.

44. Investigating the ecological interactions in a local ecosystem.

45. Analyzing the diversity of microorganisms in soil or water samples.

46. Studying the anatomy and physiology of a specific organ or system.

47. Investigating the life cycle of a local plant or animal species.

48. Studying the effects of environmental pollutants on aquatic organisms.

49. Analyzing the behavior of a specific animal species in its habitat.

50. Investigating the process of photosynthesis in plants.

Biology Research Topics For Grade 12

51. Investigating the genetic basis of a specific inherited disorder.

52. Analyzing the impact of climate change on a local ecosystem.

53.Studying the biodiversity of a particular rainforest region.

54. Investigating the physiological adaptations of animals to extreme temperatures.

55. Analyzing the effects of pollution on aquatic ecosystems.

56. Studying the life history and conservation status of an endangered species.

57. Investigating the molecular mechanisms of a specific disease.

58. Studying the ecological interactions within a coral reef ecosystem.

59. Analyzing the genetics of plant hybridization and speciation.

60. Investigating the behavior and communication of a particular bird species.

Marine Biology Research Topics

61. Studying the impact of ocean acidification on coral reefs.

62. Analyzing the migration patterns of marine mammals.

63. Investigating the physiology of deep-sea creatures under high pressure.

64. Studying the ecology of phytoplankton and their role in the marine food web.

65. Analyzing the behavior of different species of sharks.

66. Investigating the conservation of sea turtle populations.

67. Studying the biodiversity of deep-sea hydrothermal vent communities.

68. Analyzing the effects of overfishing on marine ecosystems.

69. Investigating the adaptation of marine organisms to extreme cold in polar regions.

70. Studying the bioluminescence and communication in marine organisms.

AP Biology Research Topics

71. Investigating the role of specific enzymes in cellular metabolism.

72. Analyzing the genetic variation within a population.

73. Studying the mechanisms of hormonal regulation in animals.

74. Investigating the principles of Mendelian genetics through trait analysis.

75. Analyzing the ecological succession in a local ecosystem.

76. Studying the physiology of the human circulatory system.

77. Investigating the molecular biology of a specific virus.

78. Studying the principles of natural selection through evolutionary simulations.

79. Analyzing the genetic diversity of a plant species in different habitats.

80. Investigating the effects of different environmental factors on plant growth.

Cell Biology Research Topics

81. Investigating the role of mitochondria in cellular energy production.

82. Analyzing the mechanisms of cell division and mitosis.

83. Studying the function of cell membrane proteins in signal transduction.

84. Investigating the cellular processes involved in apoptosis (cell death).

85. Analyzing the role of endoplasmic reticulum in protein synthesis and folding.

86. Studying the dynamics of the cytoskeleton and cell motility.

87. Investigating the regulation of cell cycle checkpoints.

88. Analyzing the structure and function of cellular organelles.

89. Studying the molecular mechanisms of DNA replication and repair.

90. Investigating the impact of cellular stress on cell health and function.

Human Biology Research Topics

91. Analyzing the genetic basis of inherited diseases in humans.

92. Investigating the physiological responses to exercise and physical activity.

93. Studying the hormonal regulation of the human reproductive system.

94. Analyzing the impact of nutrition on human health and metabolism.

95. Investigating the role of the immune system in disease prevention.

96. Studying the genetics of human evolution and migration.

97. Analyzing the neural mechanisms underlying human cognition and behavior.

98. Investigating the molecular basis of aging and age-related diseases.

99. Studying the impact of environmental toxins on human health.

100. Analyzing the genetics of organ transplantation and tissue compatibility.

Molecular Biology Research Topics

101. Investigating the role of microRNAs in gene regulation.

102. Analyzing the molecular basis of genetic disorders like cystic fibrosis.

103. Studying the epigenetic modifications that control gene expression.

104. Investigating the molecular mechanisms of RNA splicing.

105. Analyzing the role of telomeres in cellular aging.

106. Studying the molecular pathways involved in cancer metastasis.

107. Investigating the molecular basis of neurodegenerative diseases.

108. Studying the molecular interactions in protein-protein networks.

109. Analyzing the molecular mechanisms of DNA damage and repair.

110. Investigating the use of CRISPR-Cas9 for genome editing.

Animal Biology Research Topics

111. Studying the behavior and communication of social insects like ants.

112. Analyzing the physiology of hibernation in mammals.

113. Investigating the ecological interactions in a predator-prey relationship.

114. Studying the adaptations of animals to extreme environments.

115. Analyzing the genetics of inherited traits in animal populations.

116. Investigating the impact of climate change on animal migration patterns.

117. Studying the diversity of marine life in coral reef ecosystems.

118. Analyzing the physiology of flight in birds and bats.

119. Investigating the molecular basis of animal coloration and camouflage.

120. Studying the behavior and conservation of endangered species.

  • Neuroscience Research Topics
  • Mental Health Research Topics

Plant Biology Research Topics

121. Investigating the role of plant hormones in growth and development.

122. Analyzing the genetics of plant resistance to pests and diseases.

123. Climate change and plant phenology are being examined.

124. Investigating the ecology of mycorrhizal fungi and their symbiosis with plants.

125. Investigating plant photosynthesis and carbon fixing.

126. Molecular analysis of plant stress responses.

127. Investigating the adaptation of plants to drought conditions.

128. Studying the role of plants in phytoremediation of polluted environments.

129. Analyzing the genetics of plant hybridization and speciation.

130. Investigating the molecular basis of plant-microbe interactions.

Environmental Biology Research Topics

131. Analyzing the effects of pollution on aquatic ecosystems.

132. Investigating the biodiversity of a particular ecosystem.

133. Studying the ecological consequences of deforestation.

134. Analyzing the impact of climate change on wildlife populations.

135. Investigating the use of bioremediation to clean up polluted sites.

136. Studying the environmental factors influencing species distribution.

137. Analyzing the effects of habitat fragmentation on wildlife.

138. Investigating the ecology of invasive species in new environments.

139. Studying the conservation of endangered species and habitats.

140. Analyzing the interactions between humans and urban ecosystems.

Chemical Biology Research Topics

141. Investigating the design and synthesis of new drug compounds.

142. Analyzing the molecular mechanisms of enzyme catalysis.

143.Studying the role of small molecules in cellular signaling pathways.

144. Investigating the development of chemical probes for biological research.

145. Studying the chemistry of protein-ligand interactions.

146. Analyzing the use of chemical biology in cancer therapy.

147. Investigating the synthesis of bioactive natural products.

148. Studying the role of chemical compounds in microbial interactions.

149. Analyzing the chemistry of DNA-protein interactions.

150. Investigating the chemical basis of drug resistance in pathogens.

Medical Biology Research Topics

151. Investigating the genetic basis of specific diseases like diabetes.

152. Analyzing the mechanisms of drug resistance in bacteria.

153. Studying the molecular mechanisms of autoimmune diseases.

154. Investigating the development of personalized medicine approaches.

155. Studying the role of inflammation in chronic diseases.

156. Analyzing the genetics of rare diseases and genetic syndromes.

157. Investigating the molecular basis of viral infections and vaccines.

158. Studying the mechanisms of organ transplantation and rejection.

159. Analyzing the molecular diagnostics of cancer.

160. Investigating the biology of stem cells and regenerative medicine.

Evolutionary Biology Research Topics

161. Studying the evolution of human ancestors and early hominids.

162. The genetic variety of species and between species is being looked at.

163. Investigating the role of sexual selection in animal evolution.

164. Studying the co-evolutionary relationships between parasites and hosts.

165. Analyzing the evolutionary adaptations of extremophiles.

166. Investigating the evolution of developmental processes (evo-devo).

167. Studying the biogeography and distribution of species.

168. Analyzing the evolution of mimicry in animals and plants.

169. Investigating the genetics of speciation and hybridization.

170. Studying the evolutionary history of domesticated plants and animals.

Cellular Biology Research Topics

171. Investigating the role of autophagy in cellular homeostasis.

172. Analyzing the mechanisms of cellular transport and trafficking.

173. Studying the regulation of cell adhesion & migration.

174. Investigating the cellular responses to DNA damage.

175. Analyzing the dynamics of cellular membrane structures.

176. Studying the role of cellular organelles in lipid metabolism.

177. Investigating the molecular mechanisms of cell-cell communication.

178. Studying the physiology of cellular respiration and energy production.

179. Analyzing the cellular mechanisms of viral entry and replication.

180. Investigating the role of cellular senescence in aging and disease.

Good Biology Research Topics Related To Brain Injuries

181. Analyzing the molecular mechanisms of traumatic brain injury.

182. Investigating the role of neuroinflammation in brain injury recovery.

183. Studying the impact of concussions on long-term brain health.

184. Analyzing the use of neuroimaging in diagnosing brain injuries.

185. Investigating the development of neuroprotective therapies.

186. Studying the genetics of susceptibility to brain injuries.

187. Analyzing the cognitive and behavioral effects of brain trauma.

188. Investigating the role of rehabilitation in brain injury recovery.

189. Studying the cellular and molecular changes in axonal injury.

190. Looking into how stem cell therapy might be used to help brain injuries.

Biology Quantitative Research Topics

191. Investigating the mathematical modeling of population dynamics.

192. Analyzing the statistical methods for biodiversity assessment.

193. Studying the use of bioinformatics in genomics research.

194. Investigating the quantitative analysis of gene expression data.

195. Studying the mathematical modeling of enzyme kinetics.

196. Analyzing the statistical approaches for epidemiological studies.

197. Investigating the use of computational tools in phylogenetics.

198. Studying the mathematical modeling of ecological systems.

199. Analyzing the quantitative analysis of protein-protein interactions.

200. Investigating the statistical methods for analyzing genetic variation.

Importance Of Choosing The Right Biology Research Topics

Here are some importance of choosing the right biology research topics: 

1. Relevance to Your Interests and Goals

Choosing the right biology research topic is important because it should align with your interests and goals. Studying something you’re passionate about keeps you motivated and dedicated to your research.

2. Contribution to Scientific Knowledge

Your research should contribute something valuable to the world of science. Picking the right topic means you have the chance to discover something new or solve a problem, advancing our understanding of the natural world.

3. Availability of Resources

Consider the resources you have or can access. If you pick a topic that demands resources you don’t have, your research may hit a dead end. Choosing wisely means you can work efficiently.

4. Feasibility and Manageability

A good research topic should be manageable within your time frame and capabilities. If it’s too broad or complex, you might get overwhelmed. Picking the right topic ensures your research is doable.

5. Real-World Impact

Think about how your research might benefit the real world. Biology often has implications for health, the environment, or society. Choosing a topic with practical applications can make your work meaningful and potentially change lives.

Resources For Finding Biology Research Topics

There are numerous resources for finding biology research topics:

1. Online Databases

Look on websites like PubMed and Google Scholar. They have lots of biology articles. Type words about what you like to find topics.

2. Academic Journals

Check biology magazines. They talk about new research. You can find ideas and see what’s important.

3. University Websites

Colleges show what their teachers study. Find teachers who like what you like. Ask them about ideas for your own study.

4. Science News and Magazines

Read science news. They tell you about new things in biology. It helps you think of research ideas.

5. Join Biology Forums and Communities

Talk to other people who like biology online. You can ask for ideas and find friends to help you. Use websites like ResearchGate and Reddit for this.

Conclusion 

Biology Research Topics offer exciting opportunities for exploration and learning. We’ve explained what biology is and stressed the importance of picking a good research topic. Our tips and extensive list of over 200 biology research topics provide valuable guidance for students.

Selecting the right topic is more than just getting good grades; it’s about making meaningful contributions to our understanding of life. We’ve also shared resources to help you discover even more topics. So, embrace the world of biology research, embark on a journey of discovery, and be part of the ongoing effort to unravel the mysteries of the natural world.

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Department of Biological Sciences

biology research project

Examples of Undergraduate Research Projects

Fall 2021 projects.

StudentResearch Proposal
Whitney BrownCharacterizing the role of FOXP3 in ccRCC
Ziche ChenIntereations between LANA and Super-enhancers
Anna EberweinSynaptic Dysfunction in the Drosophila Niemann Pick Type C Disease Model
Ivy HanInvestigating tension in epithelial wound healing 
Cassidy JohnsonElucidating Genes Involved in hoe-1-dependent UPRmt activation via a Forward Genetic Approach
Grace LeeMicrotubule dynamics regulates gap junction trafficking and placement in the motor circuit
Shuyang LinPGE2-G mediated P2Y6 signaling pathway
Robert McCarthySurvivability of E. Coli Rho and H-NS mutants in various pH ranges.
Sharath NarayanIdentifying suppressor mutations in RNA polymerase to rescue replication-transcription conflicts
Dev PatelEffects of CSK inhibition on Atrial Fibrillation
Jacque PinonThe role of macrophages in obesity and metabolic disease
Brittany PolevikovDefining the pathogenic cascade of P. aeruginosa in UTIs
Eddie QianExosome treatment of ischemic kidney injury
Bennett SchneierCopper Homeostasis in UPEC Bacteria
Elena SolopovaCorrelation of White Matter MRI Hyperintensities with Expression of Lysyl Oxidase in Patients with Cerebral Amyloid Angiopathy
Carly StewartThe Impact of Infection on Fecundity in Insects
Liraz StilmanTelomeres and telomerase in yeast
Navya ThakkarRhythm and Grammar
Katherine ZhongNegative Regulators of the Immune System

Previous Projects

StudentResearch Proposal
Dhivyaa AnandanIdentifying mechanisms of tumor dormancy in the bone marrow
Patrick BrayStress effects of restricgted feeding in mice
Ivy ChenThe effect of domestication on cultural transmission of birdsong
Dara CraigCamera trapping in Ecology
Jacob EdwardsStudies on GPBP within the extracellular matrix
Elise ErmanDevelopment of assay to monitor error fre repair in non-homologous end joining
David Fei-ZhangCharacterization of BVES degrons
Jacob GussertStudying the nature of circadian rhythms in bacteria isolated from the natural environment
Alexis GutierrezExtracellular RNA
Alexander KurajExamining the effect of photoperiod on the Trek-1 channel in serotonin neurons
Emily Layton"Paternal Grandmother Age Affects the Strength of Wolbachia-Induced Cytoplasmic Incompatibility in Drosophila melanogaster."
Zelong LiuOverexpression of xCT in noralized lung epithelial cells
Abby PerryEffect of co-infection on the immune response of tribolium flour beetles
Carter PowersThe Effects of Temperature and Age on Immune Gene Expression in Anopheles gambiae
Anish RamanIntersection of HSPG expression at the drosophilia neuromuscular junction
Saba RehmanCharacterization of neuregulin (NRG) trafficking
Sabeen RehmanPositional cloning of a novel gene regulating craniofacial development
Zhan (Jack) RongThe role of Rif1 in controlling DNA damage and structure during replication
Faith RovenoltCharacterizing and modeling co-infection in Tribolium
Nicholas RuppeMechanisms that regulate do novo telomere addition at a double-strand break
Chloe StallionComparison of genetic and liguistic character of Creolization in the Caribbean
Emily StruttmannEffects of high-salt conditions on H. pylori
Amanda SunDetermining the function of Rm62 in resolving R-loops
Raymar TuranganImmune priming in mosquitoes
Claire Weinstein The characerization of acinetobacter baumannii sensitivity to novel bacteriophages
Matthew XinCharacterizing the relationship between p73 and cigarette smoke
Roger YuProtein trafficking and membrane biogenesis
Eric ZhangCK1 in DNA repair and Hhp1 as a model protein
Danzhu ZhaoQuantifying the impact of ACK1 inhibition on the interferon gamma response in melanoma cells
Junqin ZhuExamining the role of ten elleven translocation enzymes in RNA 5-hydroxymethylcytosine

150 Actual Biology Research Paper Topics

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Table of contents

  • 1 What Is Biology? What Topics Might Biologists Study?
  • 2 How to Choose a Topic for Biology Research Paper?
  • 3.1 15 Developmental Biology Topics For Research
  • 3.2 15 Immune System Biology Research Topics
  • 3.3 15 Cell Biology Research Topics
  • 3.4 15 DNA Research Topics
  • 3.5 15 Molecular Biology Research Topics
  • 3.6 15 Neurobiology Research Topics
  • 3.7 15 Abortion, Human cloning, and Genetic Researches Topics
  • 3.8 15 Environmental and Ecology Topics for Your Research
  • 3.9 15 Plant Pathology Biology Research Topics
  • 3.10 15 Animals Biology Research Topics
  • 3.11 15 Marine Biology Research Topics
  • 3.12 15 Zoology Research Topics
  • 3.13 15 Genetics Research Topics
  • 3.14 15 Biotechnology Research Topics
  • 3.15 15 Evolutionary Biology Research Topics

Biology is one of the most magnetic fields of study these days. If you want to be a biologist or scientist in the future, there is no better time to start than right now. Biology research topics covered in this article will keep you busy and interested. Writing a research paper is one of the best ways to dip your toes into the field. Before doing that, you need to know some good topics for the research paper . They should be suitable for biology students rather than cutting-edge researchers. On Papersowl.com , we provide as many biology research paper examples as possible so that you have a huge choice.

What Is Biology? What Topics Might Biologists Study?

Biology is simply the study of everything that has a form of life. It includes investigations on plants, animals, and everything found in the environment. It is about studying how life forms grow, develop, and interact with each other. Biology essay topics for research encompass all these and more.

This science uncovers many fields where various life forms are studied. It makes sense to look through these fields to help you decide which suits you the best.

Plant Biology research topics are about studying the plants around us. They disclose information about their existence as a part of the ecosystem, their life cycle, resources they can give us, their ability to preserve them from climate changes, and so on. There are many ideas to choose from, but you must focus on a specific one.

Human Biology research topics are all about us. These topics focus on different body parts, such as the human brain, the human immunological system, the nervous system, etc. In addition, you can discuss DNA modifications in humans and explain why genetic disorders occur in your research projects. Various cell research is also common today.

Biology research topics on the environment are in great demand too. For example, climate change is becoming a more significant threat every day. By studying environmental topics in biology for projects and research, we can come up with ways to combat them and preserve ecosystems.

Microbiology research topics delve into things we can’t see. There are trillions of microbes and bacteria all around us. Knowing about them is essential to understanding what makes us sick and how to fight against them. All microbiology research paper topics are pretty complicated yet very engaging to include in your paper research.

Molecular biology topics dive even deeper into the level of atoms and molecules. The various medicines and drugs we take were all created through molecular-biology research. It is one of the areas full of ideas, but there is yet to be much evidence. Science is advancing in this realm but still needs a lot of time. Topics of molecular biology will need days for research only.

Keep in mind that there are more ideas and variations of this science. We offer more examples in further sections of the article about developmental biology, marine biology, evolutionary biology, etc. Explore them and make your writing appealing and meaningful in the eyes of a professor.

How to Choose a Topic for Biology Research Paper?

When choosing a biology project topic, you must be aware of one or more fields of science. Biology research is critical to the present world. By doing research, we can learn more about genetic disorders, immune disorders, mental health, natural disease resistance, etc. Knowing about each of these could save lives in the future.

For those who may not have the time or resources to do their own research, there are research paper writing services that can provide assistance with the project. And we are always here to help you find your own topic among interesting biology research topics. Here we prepared some useful tips to follow.

  • Tip 1: The level of interest matters Pay attention to one that interests you, and you might have ideas on how to develop the topic. Passion is fundamental in research, after all.
  • Tip 2: Explore the topic Try to narrow things down a bit. If the topic is too broad, you may not be able to cover all aspects of it in one research paper. If it is too narrow, the paper could end up too short. Analyze the topic and the ways to approach it. By doing so, you can strike a balance between the two.
  • Tip 3: Discover the recent developments To make your research paper touchable with the present day, you must explore the latest developments in the field. You can find out what kind of research has been done recently by looking at journals. Check out research papers, topics, research articles, and other sources.
  • Tip 4: Ensure to get enough resources When choosing a topic, make sure it has plenty of resources available. For example, a research paper on xenobiology or cutting-edge nanobiology might sound attractive. Still, you might have difficulties getting data and resources for those unless you are a researcher at a government lab. Data, resources, complex numbers, and statistics are all invaluable to writing a paper about these topics.

That is why we have selected a range of biological topics. The topics on this list are all hopefully exciting topics for research you could write an excellent paper on. We should also add that easy biology topics to research are rare, and a writer usually needs days to prepare and start writing. Yes, biology research topics for high school students are a bit easier, but still, they need time to explore them.

On the other hand, biology research topics for college students are far more complex and detailed. Some people prefer evolutionary biology research paper topics, and we can agree with this claim. These research areas do have a lot of potential and a lot of data to support the claims. Others prefer cell biology research topics that are a bit specific and fun. Anyway, with this article’s list of easy biology research topics, you will surely find the one matching your interest.

For those who may not have the time or resources to do their own research, there are provide assistance with the project.

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Top Research Biology Paper Topics

This section contains a large selection of research biology paper topics. You will be able to find one that will suit you the best. The only thing left is to decide what variation of science you prefer. Whether you’re interested in microbiology, genetics, or any other type of science, you’ll find a topic to get you started. If you’re ever stuck or need some extra help, you can always pay someone to write your paper for you. So, take a look, and choose the perfect topic for your project!

15 Developmental Biology Topics For Research

Exploring the processes of how cells grow and develop is exciting. The human body contains millions of cells, and it’s interesting to research their behavior under different conditions. If you feel like writing about it, you can find some interesting biology topics below.

  • How do stem cells form different tissues?
  • How are tumors formed?
  • Duplication of genomes
  • Plasticity of development
  • Different birth defects
  • Interactions between genes and the environment
  • Anticancer drugs mixtures
  • Developmental diseases: Origin
  • Drosophila Oogenesis
  • Most deadly viruses
  • Most deadly bacteria in the world
  • How do germs affect cells?
  • How does leukemia start?
  • Development of the cardiovascular system in children
  • How do autoimmune diseases start and affect the human body?

15 Immune System Biology Research Topics

For decades, many scientists and immunologists have studied the human immune system and tried to explain its reaction to various pathogens. This area allows you to deepen into it and reveal how a body protects itself from harmful impact. Look over the biology research questions below and find your match-up.

  • How does the human body’s immune system work?
  • The human immune system: How to strengthen it?
  • What makes the immunological system weaker?
  • The notion of auto-immune diseases and their effect on the body’s immune system
  • The global HIV/aids epidemic
  • What methods are used to prevent the spread of hives?
  • Living with auto-immune diseases
  • Genetics and the immune system: effects and consequences
  • How do immune disorders affect the body, and what causes them?
  • Are allergies signs of worrying about an immune disorder?
  • DNA modification in solving immune disorders
  • Stress as the biggest ruiner of the immunological system
  • Vaccines as strong supporters of the immunological system
  • The perception of vaccines in society
  • Why do some people refuse vaccines and put others around them in danger?

15 Cell Biology Research Topics

Cell study might seem challenging yet very engaging. It will be a good idea to compare various types of cells and compare them in animals and plants. Make your choice from the list of cell biology research topics below.

  • The structure of an animal cell
  • Mitochondria and its meaning in cell development
  • Cells classification and their functions
  • Red blood cells and their function in transporting oxygen
  • White blood cells and their responsibility to fight diseases
  • How are plant cells different from animal cells?
  • What would it be if animals had a function to photosynthesize?
  • Single-celled organisms: What is it, and how do they work?
  • What processes do cells go through in division?
  • Invasion of bacteria into the body
  • Viruses – alive or not?
  • Fungi: their reproduction and distribution
  • Cancer cells: Why are they so dangerous?
  • What methods are used to kill cancer cells?
  • The role of stem cells and their potential in a body

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15 DNA Research Topics

The variety of biology research topics for college students might impress you a lot. This is a science with a large field of investigation, disclosing much scientific information to use in your project. The notion of DNA and its gist are also excellent options to write about.

  • The structure of the human DNA
  • The main components of a DNA chain
  • Why does DNA have a double-helix spiral structure?
  • The purpose of chromosomes
  • MRNA and its relation to DNA
  • Do single-celled organisms have DNA?
  • Do viruses have DNA?
  • What happens if you have too many or too few chromosomes?
  • Analyzing the structure of DNA using computers
  • Uses for the DNA of extinct organisms like mammoths and dinosaurs
  • Storing non-genetic information in DNA
  • Can you write a computer program into human DNA?
  • How does radiation affect DNA?
  • Modifying DNA to treat aids
  • Can we fight cancer through DNA modification?

15 Molecular Biology Research Topics

Do you prefer to research molecules’ chemical and physical composition? We gathered some molecular biology research topics to make your choice easier.

  • The structure and components of a gene
  • How do molecules move in and out of a cell?
  • The basic building blocks of life
  • How are drugs designed for humans?
  • How is a vaccine designed to target a specific disease?
  • Dominant genes vs. recessive genes
  • Prion disease – why is it so dangerous?
  • Hormones and their function in the body
  • Developing artificial hormones from other animals
  • How to carry out a western blot?
  • Testing and analyzing DNA using PCR
  • The three-dimensional structure of a molecule
  • What is DNA transcription, and how is it used?
  • The structure of a prion
  • What is the central dogma of molecular biology?

15 Neurobiology Research Topics

The more you dive into science, the more exciting things you find. That’s about biology. Here, you can choose biology research topics for high school and try to reveal more simply.

  • Nervous system: its structure and function
  • Neurons as unique cells playing a central role in the nervous system
  • What is the maximum reaction speed in a human?
  • Reaction speed: how to improve it?
  • Research on Organic Farming
  • What are the symptoms of Alzheimer’s disease?
  • Why do we feel happy or sad?
  • Headaches in terms of Neurobiology
  • What are the reasons for neurobiological degeneration?
  • Myths and reality of Amnesia
  • What causes Alzheimer’s Disease, and what are the consequences of the disease?
  • What is the treatment for Spinal Cord Injury?
  • Studies on Narcolepsy and Insomnia: What are the causes?
  • Is there a connection between Mental Health and Neurobiology?
  • Emotions in terms of their reflection in the brain

15 Abortion, Human cloning, and Genetic Researches Topics

There are so many scientific researches and theories that society accepts or neglects. You can operate different notions and try to explain them, reflecting their advantages and downsides for a human being. We gathered some enticing life science research topics for high school students that might interest you.

  • The controversy around abortion: legal or not?
  • Can abortion be safe?
  • Human cloning – reality vs. science-fiction
  • The goals of cloning humans
  • Are human cloning and transplantation ethical?
  • Having a “perfect child” through gene therapy: Is it a myth?
  • How far has gene therapy gone in genetic research?
  • Advantages and disadvantages of gene therapy
  • How gene therapy can help beat cancer
  • How gene therapy can eliminate diabetes
  • The opportunity to edit genes by CRISPR
  • DNA modifications in humans to enhance our abilities – an ethical dilemma
  • Will expensive gene therapy widen the gap between the rich and the poor?
  • Cloning: the good and the Bad for a Generation
  • The disadvantages of cloning
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15 Environmental and Ecology Topics for Your Research

The nature around us is so enormous and includes many branches to investigate. If you are keen on the environment and how ecology affects it, the list of follow-up biology paper topics might be helpful to you.

  • The theory of evolution
  • How does natural selection work?
  • How do living organisms adapt to their environment?
  • The concept of divergent and convergent evolution
  • Building a sustainable environment
  • Development of environment-friendly cities
  • How to control population growth?
  • Why have recycling resources become so essential in the modern world?
  • The effect of plastic on the environment
  • What are the global consequences of deforestation?
  • What can we expect when losing biodiversity?
  • Ecological damage: How to prevent it?
  • How can GMO products affect ecology?
  • Cloning endangered or extinct species: Is it a good idea?
  • Is climate change the main reason for disrupting ecology?

15 Plant Pathology Biology Research Topics

Many factors impact human health and the quality of food products matters. These easy biology research topics will be useful if you want to describe the connection between those two concepts.

  • How do plants protect themselves from diseases?
  • How to increase the plant’s resistance to diseases?
  • Diseases distribution among plants
  • The banana pandemic
  • How do herbicides influence plants?
  • Corn blight
  • Can any plant diseases affect humans?
  • The issue of stem rust and its impact on wheat
  • What approaches are used to struggle against invasive plants and affected weeds?
  • Fertilizers: their pros and cons on plants
  • Plant disease genetics: its system and structure
  • What is the connection between ecological changes and plant diseases?
  • Modifications on food production because of plant diseases
  • How do fungal and viral diseases appear in plants?
  • The sweet potato virus

15 Animals Biology Research Topics

It’s hard to find someone who doesn’t like animals. If you are curious about animals scientifically, here you are with biology research paper topics in this field.

  • Classification of animals
  • Land-based life: its evolution history
  • Controversies about keeping animals as pets
  • Is it ethical to test drugs and products on animals?
  • Why do nature reserves against zoos?
  • Evidence on prehistoric aquatic animals growing giant
  • What species of animals are vegan?
  • Animals and their social behavior
  • Primate behavior
  • How intelligent can other primates be?
  • Are wolves and dogs intelligent?
  • Domesticating animals
  • Hibernation in animals
  • Why animals migrate
  • Should we bring back extinct animals?

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15 Marine Biology Research Topics

The marine theme is engaging as it reveals so many interesting facts about life forms dwelling under the water. You can make your paper look captivating using biology topics in marine below.

  • How acidification affects aquatic environments
  • Evolution in the deep sea
  • What’s the meaning of camouflage mechanism in sea life?
  • Consequences of oil spills on marine life
  • Oldest marine species
  • How do whales communicate with each other?
  • How blind fish navigate
  • Are marine shows and aquariums ethical?
  • The biology and life cycle of seabirds
  • How jellyfish are immortal
  • Plankton ecology
  • Difference between freshwater and seawater marine life
  • Coral reefs: their importance and evolution
  • Saving and restoring coral reefs
  • Life in the deep-sea ocean trenches

15 Zoology Research Topics

Zoology can be an excellent choice to write about if you are close to animal studies. Look at biology topics to research and choose the one that fits your interest most.

  • Asian elephants and human speech patterns
  • Oyster genomes and adaptation
  • Darwin’s work in the Galápagos Islands
  • Asian carp: Invasive species analysis
  • Giant squids: Fact vs. fiction
  • Coyote and wolf hybrid species in the United States
  • Parasites and disease
  • Migration patterns of killer bees
  • The treatment of species in Melville’s Moby Dick
  • Biodiversity and plankton
  • The role of camels and the development of Africa and the Middle East
  • Muskellunge and adaptive creek mechanisms to small water
  • Ants and cooperative behavior among species
  • Animal communication and the origin of language
  • Speech in African Gray Parrots

15 Genetics Research Topics

Writing about modifications caused on the gene level is pretty challenging but very fascinating. You can select one among the biological questions for research and bring up a meaningful paper.

  • Genetics and its role in cancer studies
  • Can genetic code be confidential?
  • Is it possible to choose the sex of a person before birth?
  • Genetics as a ray of hope for children with an intellectual disability
  • What factors in human genetics affect behavior?
  • Is it somehow possible to improve human personality through genetics?
  • Are there any living cells in the gene?
  • Fighting HIV with gene mutations
  • Genetic mutations
  • How addictive substances affect genes
  • Genetic testing: is it necessary?
  • Cloning: positive or negative outcome for future generations
  • Pros and cons of genetic engineering
  • Is the world ready for the bioethics revolution?
  • The linkage between genetics and obesity

15 Biotechnology Research Topics

The way scientists conduct research today is magnificent. Implementing high-tech innovations in biology research brings new opportunities to study the world. What are these opportunities? Explore biotechnology research topics for college students and disclose the best options for you.

  • Biotechnology used in plant research
  • What is the contribution of biotechnology to food?
  • Pharmacogenetics: What is it, and how it works?
  • How are anti-cancer drugs produced to be effective?
  • Nanotechnology in DNA: How to isolate it?
  • Recent nanotechnology used in HIV treatment
  • What biotech apps are used to detect foodborne pathogens in food systems?
  • Genotypes research: Why are they tolerant and sensitive to heavy metal?
  • High-tech solutions in diagnosing cancer
  • Forensic DNA and its latest developments
  • Metabolic changes at the level of cells
  • Nanotechnology in improving treatments for respiratory viruses
  • The latest biotech discoveries
  • Digital evolution: bioresearch and its transformation
  • The concept of vaccine development

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15 Evolutionary Biology Research Topics

Knowing how life forms started their existence is fundamental. And more interesting is to look through the evolution of many processes. If you find this trend of research more engaging, we outlined evolutionary biology research paper topics to diversify your choice.

  • Darwin’s concept’s impact on science
  • The evolution concept by Lamarck
  • Origins of the evolutionary theory
  • Evolution acceptance: a belief vs. a theory?
  • Evolutionary in microbiology
  • Development of robotics
  • Revealing differences: human brain & animal brain
  • Preservation of biological resources
  • Transformations in aging
  • Adaptive genetic system
  • Morphometrics’ history
  • Developmental theory and population genomics
  • Bacteria ecology’s evolution
  • Biological changes: impact and evolution
  • Infectious diseases and their profession

The world of science and biology is vast, making research tedious. Use our list of interesting biology research topics to choose the best issue to write your own paper.

However, it is still hard to prepare a high-quality biology research paper, even with a brilliant topic. Not all college students can do it. Do you feel like you need some help? Then buy biology paper from our professional writers! Our experts will choose the best biology experimental research topics for you and can bring up top-level papers within the shortest time. Additionally, if you need help with a statistics project related to biology, our team of experienced professionals is equipped to provide you with the utmost quality of research and analysis.

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212 Unique Biology Research Topics For Students And Researchers

biology research topics

Every student studying something related to biology — botany, marine, animal, medicine, molecular or physical biology, is in an interesting field. It’s a subject that explores how animate and inanimate objects relate to themselves. The field unveils the past, the present, and what lies in the future of the relationship between the living and nonliving things.

This is precisely why you need custom and quality biology topics for your college and university essay or project. It’ll make it easy to brainstorm, research, and get to writing straight away. Before the deep dive, what is biology?

What Is Biology?

Everyone knows it’s the scientific study of life, but beyond that, biology facilitates the comprehension of living and nonliving things. It’s a branch that explores their anatomy, behavior, distribution, morphology, and physiology.

For example, it understands how genes are classified and constituted into generations. It encompasses various branches, including botany, medicine, genetics, ecology, marine biology, zoology, and molecular biology.

Here are what some of these mean:

Botany: This study of plants examines their structure, physiology, ecology, economic importance, and distribution, among others. It also deals with their biochemical processes, properties, and social interactions between plants. It extends to how plants are vital for human life, survival, and growth and how they play a significant role in stabilizing environmental health. Zoology: Zoology studies animal behavior, brain, structure, physiology, class, and distribution. It’s the general study of the lives of both living and extinct animals. It explains animal classification, the animal kingdom, evolution, habitat, embryology, and life span. Physiology: Physiology deals with the daily functions of the human body: How it works and the factors that make it work. It examines molecular behavior, the chemistry and physics behind locomotion, and how the cells in the living organisms’ body function. It helps understand how humans and animals get sick and what can be done to alleviate pain. Microbiology: Dealing with microorganisms, it examined how viruses, algae, fungi, bacteria, protozoa, and slime molds become parts of human life. They’re regarded as microbes, which play substantial roles in the human biochemical processes, including climate change, biodegradation, biodeterioration, food spoilage, biotech, and epidemiology. Marine Biology: This is the scientific study of organs in the sea. It understands their family classification, how they survive, and what makes wild marine animals different from domesticated and consumable ones. It also explores their interaction with the environment through several processes. The marine biologist studies marines in their natural environment, collects data on their characteristics, human impact on their living, and how they relate with themselves.

Now that you know all these, here are some custom biology topics to research for your university or college essay and paper.

Controversial Biology Topics

There are many controversial subjects in every field, and biology isn’t exempt from controversy. If you’d like to create an original essay through diverse opinions, here are biology topics for you:

  • What are your thoughts on the post-Roe V Wade world?
  • How can the post-Roe V Wade policy affect developing countries looking up to America for their laws?
  • Abortion and feminism: discuss
  • Does saving life justify cloning?
  • Explain the principle of abortion in medical practice
  • The effects of cloning in medicine
  • How does genetics contribute to obesity?
  • Explain why a parent could have Hepatitis B virus and only one of five offspring have the virus
  • Is homosexuality really in the gene?
  • How does depression correlate with genetics?
  • Additives and how they affect the genes
  • Examine how genetic mutations work
  • Discuss the grounds that you could prove for legalizing human cloning
  • Which is more immoral: Human or animal cloning?
  • How is nanotechnology different from biotechnology?
  • Discuss the manifestation of nanotechnology in science
  • Explain three instances where public opinion has held back scientific inventions
  • How does transgenic crop work?
  • Would you say genetically modified food is safe for consumption?
  • Explain why sexual abuse leads to trauma.

Biology Research Paper Topics

You’d need to write an extensive paper on biology one day. This could be when you’re in your final year in college or the university or submitting to a competition. You’d need Biology topics to research for brainstorming, and here are 30 of them:

  • Stem cells and tissue formation processes
  • Why are there different congenital disabilities?
  • Mixtures in anticancer drugs?
  • What are the complexities of existing HIV drugs?
  • What is the contribution of chemotherapy to cancer?
  • Examine the chemotherapy process and why it doesn’t work for some patients.
  • Explain the origin of developmental diseases
  • How do germs affect the cells?
  • What are the consequences of the sun on the white person’s and black person’s skin?
  • Why are some diseases treatable through drugs while some are not?
  • Scientific lessons learned from COVID-19 and ideas to tackle the next virus
  • If animals are carriers of the virus, what should be done to them?
  • Examine five animals in extinction and what led to it
  • Discuss the subject of endangered species and why people should care
  • Is a plant-based diet sustainable for human health?
  • Account for the consequence of living on Mars on human health
  • Discuss the inconveniences involved in space travel
  • How does space flight contribute to environmental disasters
  • Discuss the emergence of leukemia
  • Explain how the immune systems in humans work
  • Evaluate the factors that weaken the immunological system
  • What would you consider the deadliest virus?
  • Autoimmune: what is it, origin and consequences
  • Immune disorder: origin and how it affects the body
  • Does stress affect the ability to have sex?
  • Contribution of vaccine to eradicating disease: Discuss
  • What are the complexities in taking the Hepatitis B vaccine while being positive?
  • Allergies: why do humans have them?
  • DNA modification: how does it work?
  • Explain the misconceptions about the COVID-19 vaccines.

Interesting Biology Topics

Biology doesn’t have to be boring. Different aspects of biology could be fun to explore, especially if you’ve had a flair for the study since your elementary school classes.

You can either write an essay or paper with the following interesting biology research topics:

  • Human emotions and conflicts with their intellectual intelligence
  • Emotions: Its influence on art and music and how the perception of art influences the world
  • The consequences of marijuana and alcohol on teenagers
  • Compare and contrast how alcohol affects teenagers and adults
  • Discuss the contributions of neuroscience to the subject of emotional pain
  • Explain how the brain process speech
  • Discuss the factors that cause autism
  • Explain what is meant when people say humans are animals
  • Why do scientists say humans are pessimists?
  • Factors contributing to the dopamine levels human experience
  • How does isolation affect the human brain?
  • What factors contribute to instinctive responses?
  • Noise pollution: how it affects living organisms
  • Fire ecology: The contributions of plants to fire outbreak
  • Explain the science behind how hot temperature, soil, and dry grass start a fire
  • Microbes: what do you understand by bioremediation?
  • Explain urban ecology and the challenges it pokes to solve
  • Discuss how excessive internet usage affects the human memory
  • Evaluate how conservation biology contributes to the extinction prevention efforts
  • Discuss the role of satellites and drones in understanding the natural world
  • Why do we need space travel and studies?
  • Explain the limitations of limnology studies
  • What are infectious-disease-causing agents all about?
  • Discuss what epigenetics studies encompass
  • Why is cancer research essential to the world?
  • Discuss climate change: Governments are not interested, and there is no alternative
  • How is behavioral science studies a core part of the understanding of the world?
  • Discuss the issues with genetic engineering and why it’s a challenge
  • Evaluate the strengths and weaknesses in the arguments for a plant-based diet
  • Create a survey amongst students of biology asking why they chose to study the course.

Biology Research Topics For College Students

If you find any of the above beyond your intellectual and Research capacity, here are some topics you can handle. You can use these for your essays, projects, quizzes, or competitions.

These custom yet popular biology research topics will examine famous personalities and other discourse in biology:

  • Effects of the human hormone on the mind
  • Why do men get erect even when they’re absentminded?
  • How does women’s arousal work?
  • How can melatonin be valuable for therapy?
  • Risky behavior: Hormones responsible for the risk
  • Stem and cloning: what is the latest research on the subject?
  • Hormones: changes in pregnancy
  • Why do pregnant women have an appetite for random and remote things?
  • The role of physical activities in hormone development
  • Examine the benefits and threats of transgenic crops
  • The fight against COVID-19: assess current successes
  • The fight against smallpox: assess current successes
  • The fight against HIV: history, trends, and present research
  • Discuss the future of prosthetic appliances
  • Examine the research and the future of mind-controlled limbs
  • What does cosmetic surgery mean, and why is it needed?
  • Analyze the meaning and process of vascular surgery
  • Discuss the debate around changes in genital organs for males and females in transgender bodies
  • How do donors and organ transplants work?
  • Account for the work of Dr. Malcom E Miller
  • Discuss the contribution of Charles Darwin to human evolution
  • Explain the trends in biomedicine
  • Discuss the functions of x-rays in botany
  • Assess the most efficient systems for wildlife preservation
  • Examine how poverty contributes to climate hazards
  • Discuss the process involved in plant metabolism
  • The transformation of energy into a living thing: discuss
  • Prevention for sexually transmitted disease: What are the misconceptions?
  • Analyze how the human body reacts to poison
  • Russian Poisoning: What are the lessons scientists must learn?
  • COVID-19: Discuss the efforts by two or three governments to prevent the spread
  • Discuss the contributions of Pfizer during the pandemic.

Marine Biology Research Topics

This subject explains orgasms in the sea, how they survive, and their interaction with their environment. If you have a flair for this field, the following Biology research topics may interest you:

  • Discuss what quantitative ecology through modeling means
  • Smallest diatoms and marine logistics: discuss
  • How is the shark studied?
  • Acidification of seas: Causes and consequences
  • Discuss the concept of the immortality of Jellyfishes
  • Discuss the differences between seawater and freshwater in marine study
  • Account for some of the oldest marine species
  • Discuss the evolution of the deep sea
  • Explain whales’ communication techniques
  • What does plankton ecology encompass?
  • The importance of coral reefs to seawater
  • Challenges that encompass geological oceanography
  • How tourism affects natural animal habitat
  • Discuss some instances of the domestication of wild marine animals
  • Coastal zone: pros and cons of living in such areas
  • How do sharks perceive enemies?
  • Analyze why some animals can live in water but can’t live on land
  • Explain how plants survive in the sea
  • Compare and contrast the different two species of animals in the water
  • How can marine energy be generated, stored, and used?

Molecular Biology Research Topics

Focusing on the construct of cells and analysis of their composition, it understands the alteration and maintenance of cellular processes. If you’d like to focus on molecular biology, here are 15 good biology research topics for you:

  • Ethical considerations in molecular genetics
  • Discuss the structure and component of the gene
  • Examine the restrictions in DNA
  • What are the peculiarities in modern nucleic acid analysis
  • What goes into the Pharmaceutical production of drugs
  • Evaluate the building blocks of life
  • Discuss the systems of RNA translation to protein
  • PCR: How DNA is tested and analyzed
  • Why is prion disease so dangerous?
  • Compare and contrast recessive genes vs. dominant genes
  • Can there be damage to the human DNA, and can it be repaired?
  • Constraints in the research of microarray data analysis
  • Protein purification: How it evolves
  • Objectives of nucleic acid
  • Explain the structure of a prion.

Biology Research Topics For High School

Your teachers and professors will be awed if you create impeccable essays for your next report. You need to secure the best grades as you move closer to graduation, and brainstorming any of these popular biology research topics will help:

  • Identify the most endangered species
  • The challenges to animal extinction
  • What are the things everyone should know about sea life?
  • Discuss the history of genetics
  • Explain the biological theory of Charles Darwin
  • How did the lockdown affect social interaction?
  • Why do some people refuse the vaccine?
  • Origin of genetics
  • What is animal hunting, and why is it fashionable
  • Explain the evolution of a virus
  • Role of lockdown in preventing deaths and illnesses
  • Invasive species: What does it mean?
  • Endangered animals: How do they survive in the face of their hazards?
  • Lockdown and their role in reducing coronavirus transmission
  • Vaccine distribution: Ideas for global distribution
  • Why can viruses become less virulent?
  • Discuss the evolution of the world
  • Explain the evolution of the planet
  • Explain what Elon Musk means when he says life on Mars is possible
  • What does herd immunity mean?
  • Flu: why is there a low incidence in 2020?
  • Relationship between archaeology and biology
  • Antiviral drug: What it means
  • Factors leading to the evolution of humans
  • Give instances of what natural selection means
  • What is considered the dead branches of evolution
  • Whale hunting: What it means and the present trends
  • Who is Stephen Jay, and what is his role in paleontology?
  • Origin of diseases: why must humans fall sick?
  • Why are humans called higher animals?

Human Biology Research Topics

Human biology understands humans and their relationship between themselves and their environment. It also studies how the body works and the impediments to health. Here are some easy biology research topics to explore on the subject:

  • How do gut bacteria affect the brain?
  • What are the ethical concerns around organ transplants?
  • The consequence of alcohol on the liver
  • The consequences of extreme salt on the human body
  • Why do humans need to deworm regularly?
  • The relationship between obesity and genetics
  • Genetically modified foods: Why are they needed?
  • How sun exposure affects human skin
  • Latest trends: Depression is hereditary
  • Influence of music on the human brain
  • What are the stages of lung cancer
  • Forensic DNA: latest trends
  • How visual consumptions affect how humans think
  • What is the process that leads to pregnancy?
  • Explain the role of nanotechnology in HIV research
  •  Discuss any experiment with stem cells you know about
  • Explain how humans consume food
  • Discuss the process of metabolism as well as its criticality to human health
  • Explore the consistent challenges technology poses to human health
  • Explain the process of body decay to a skeleton.

Cell Biology Research Topics

There are many evolutionary biology research paper topics formed not by the nomenclature but for what they stand for. Cell biology is one of the most complex branches of the field.

It examines minor units and the living organisms that make them up. The focus is on the relationship between the cytoplasm, membrane, and parts of the cell. Here are some topics to explore for your scientific dissertation writing :

  • How does chromatin engage in the alterations of gene expression?
  • What are the usual cell infections, and why does the body have immunity defections?
  • Identify and account for the heritage of Robert Brown in his core career focus
  • Explain the structure of the animal cell and why It’s what it is
  • Identify the cells in the human body as well as their functions
  • Explain a scenario and justify the context of animals photosynthesizing like plants
  • Why do bacteria invade the body, and how do they do it?
  • Why are mitochondria considered the powerhouse of the cell
  • Use the molecular analysis tool to explain multicellular organisms
  • Examine how the White blood cells fight disease
  • What do you understand about the role of cell biology in the treatment of Alzheimer’s Disease
  • What are the latest research methods in cell biology?
  • Identify the characteristics of viruses and why they threaten human existence.
  • Discuss the differences between DNA and RNA
  • What part of the body is responsible for human functionality for as long as the individual wants?

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Home » 350+ Biology Research Topics

350+ Biology Research Topics

Biology Research Topics

Biology is a vast field of study that explores the diverse aspects of life, from the smallest organisms to the complex ecosystems they inhabit. With new discoveries being made every day, the field of biology is constantly evolving and expanding. As a result, there are numerous research topics within biology that can capture the imagination of students, researchers , and professionals alike. Whether you’re interested in genetics, ecology, microbiology, or any other subfield of biology, there is no shortage of fascinating topics to explore. In this post, we will discuss some of the most compelling biology research topics that you can delve into.

Biology Research Topics

Biology Research Topics are as follows:

  • The role of gut microbiota in human health and disease.
  • The effects of climate change on animal behavior and physiology.
  • The molecular mechanisms of cancer development and progression.
  • The evolutionary origins of human language.
  • The impact of pesticides on insect populations and ecosystems.
  • The genetic basis of aging and longevity.
  • The ecological importance of microbial communities in soil.
  • The physiology and behavior of marine mammals.
  • The molecular mechanisms of viral infections.
  • The evolutionary history of flowering plants.
  • The ecological impacts of invasive species.
  • The role of epigenetics in gene regulation and disease.
  • The evolution of social behavior in animals.
  • The physiology and ecology of birdsong.
  • The impact of antibiotics on gut microbiota and human health.
  • The role of the microbiome in psychiatric disorders.
  • The evolutionary history of human migrations.
  • The ecological and physiological effects of light pollution on animals.
  • The mechanisms of cell division and differentiation.
  • The ecological impacts of deforestation.
  • The molecular mechanisms of drug addiction.
  • The genetic basis of plant resistance to pests and diseases.
  • The evolutionary history of human diet and nutrition.
  • The molecular mechanisms of neurodegenerative diseases.
  • The ecology and evolution of sexual selection.
  • The physiological and behavioral effects of air pollution on animals.
  • The role of epigenetics in plant development and stress response.
  • The evolutionary history of animal domestication.
  • The molecular mechanisms of genetic diseases.
  • The ecological impacts of climate change on plants.
  • The evolutionary history of human mating systems.
  • The physiological and behavioral effects of noise pollution on animals.
  • The genetic basis of intelligence and cognitive abilities.
  • The ecological and physiological effects of ocean acidification on marine organisms.
  • The molecular mechanisms of immune system function and dysfunction.
  • The evolutionary history of human social structures.
  • The ecological impacts of plastic pollution on marine ecosystems.
  • The genetic basis of animal migration.
  • The physiological and behavioral effects of light and dark cycles on animals.
  • The ecological and evolutionary dynamics of symbiosis.
  • The molecular mechanisms of gene regulation and expression.
  • The evolutionary history of human disease resistance.
  • The ecological impacts of overfishing on marine ecosystems.
  • The genetic basis of animal communication.
  • The physiological and behavioral effects of temperature changes on animals.
  • The ecological and evolutionary dynamics of parasitism.
  • The molecular mechanisms of circadian rhythms.
  • The evolutionary history of human social cognition.
  • The ecological impacts of urbanization on wildlife.
  • The genetic basis of antibiotic resistance in bacteria.
  • The impact of climate change on insect population dynamics.
  • The role of the microbiome in the development of autoimmune diseases.
  • The genetic basis of complex human diseases such as diabetes and heart disease.
  • The evolution of plant secondary metabolites and their ecological functions.
  • The effects of anthropogenic noise on animal communication and behavior.
  • The molecular mechanisms of protein synthesis and folding.
  • The role of RNA in gene expression and regulation.
  • The ecology and evolution of microbial symbioses in plants.
  • The physiological and behavioral effects of air temperature changes on animals.
  • The genetic basis of crop domestication and improvement.
  • The evolution of reproductive strategies in animals.
  • The impacts of plastic pollution on terrestrial ecosystems.
  • The molecular mechanisms of stem cell differentiation and regeneration.
  • The ecological dynamics of predator-prey interactions.
  • The role of gut microbiota in the regulation of host metabolism.
  • The genetic basis of host-pathogen coevolution.
  • The evolution of social cognition and cooperation in animals.
  • The ecological and physiological effects of wildfires on ecosystems.
  • The molecular mechanisms of transcriptional regulation in eukaryotic cells.
  • The role of microorganisms in soil nutrient cycling and ecosystem functioning.
  • The genetic basis of plant-pathogen interactions.
  • The ecology and evolution of microbial communities in the ocean.
  • The physiological and behavioral effects of water pollution on aquatic organisms.
  • The molecular mechanisms of protein degradation and turnover.
  • The impact of urbanization on pollinator populations and plant-pollinator interactions.
  • The genetic basis of insecticide resistance in pests.
  • The evolution of animal cognition and perception.
  • The ecological and evolutionary dynamics of host-parasite interactions.
  • The role of epigenetic modifications in plant adaptation to environmental stress.
  • The physiological and behavioral effects of endocrine disruptors on animals.
  • The molecular mechanisms of DNA replication and repair.
  • The impact of ocean warming on coral reef ecosystems.
  • The genetic basis of animal personality traits.
  • The ecology and evolution of microbial symbioses in animals.
  • The physiological and behavioral effects of light quality on plants.
  • The molecular mechanisms of RNA editing and splicing.
  • The role of microbial communities in plant-pathogen interactions.
  • The ecological and evolutionary dynamics of seed dispersal.
  • The genetic basis of animal coloration and pattern.
  • The impact of climate change on plant phenology and productivity.
  • The molecular mechanisms of signal transduction in cells.
  • The role of microbial communities in the human gut-brain axis.
  • The ecology and evolution of animal migrations.
  • The physiological and behavioral effects of chemical pollution on animals.
  • The genetic basis of animal development and morphogenesis.
  • The evolution of animal social behavior and communication.
  • The ecological dynamics of plant-pollinator networks.
  • The molecular mechanisms of intracellular trafficking and transport.
  • The role of microbial communities in the degradation of pollutants.
  • The ecological and evolutionary dynamics of species interactions in ecological communities.
  • The role of epigenetics in cancer development and progression.
  • The molecular basis of antibiotic resistance in bacteria.
  • The impact of climate change on biodiversity and ecosystem functioning.
  • The genetic basis of aging and age-related diseases.
  • The evolution of social organization in primates.
  • The ecological dynamics of plant-fungal interactions.
  • The role of microbiota in immune system development and function.
  • The molecular mechanisms of DNA damage and repair.
  • The physiological and behavioral effects of climate change on marine organisms.
  • The genetic basis of human variation and diversity.
  • The evolution of sexual selection and mate choice in animals.
  • The ecological and evolutionary dynamics of species invasions.
  • The role of microbiota in brain function and behavior.
  • The molecular mechanisms of immune system activation and regulation.
  • The physiological and behavioral effects of pollution on wildlife.
  • The genetic basis of behavioral disorders and mental illness.
  • The evolution of plant-pollinator mutualisms.
  • The ecological dynamics of predator-prey coevolution.
  • The role of microbiota in metabolic diseases such as obesity and diabetes.
  • The molecular mechanisms of protein-protein interactions and signaling.
  • The genetic basis of complex traits such as intelligence and personality.
  • The evolution of animal communication and language.
  • The ecological and evolutionary dynamics of mutualistic interactions in ecological communities.
  • The role of microbiota in the development and maintenance of gut homeostasis.
  • The molecular mechanisms of neurotransmitter synthesis and release.
  • The physiological and behavioral effects of artificial light at night on wildlife.
  • The genetic basis of developmental disorders such as autism and ADHD.
  • The evolution of host-parasite coevolution and adaptation.
  • The ecological dynamics of plant-herbivore interactions.
  • The role of microbiota in the regulation of metabolism and energy balance.
  • The molecular mechanisms of membrane transport and signaling.
  • The physiological and behavioral effects of habitat fragmentation on wildlife.
  • The genetic basis of circadian rhythms and sleep disorders.
  • The evolution of animal cognition and decision-making.
  • The ecological and evolutionary dynamics of trophic cascades.
  • The role of microbiota in the development and function of the respiratory system.
  • The molecular mechanisms of epigenetic inheritance.
  • The physiological and behavioral effects of endocrine disruptors on wildlife.
  • The genetic basis of developmental plasticity and adaptation.
  • The evolution of animal social learning and culture.
  • The ecological dynamics of predator-prey interactions in aquatic systems.
  • The role of microbiota in the regulation of host immunity and inflammation.
  • The molecular mechanisms of RNA interference and gene silencing.
  • The physiological and behavioral effects of climate change on migratory animals.
  • The genetic basis of drug addiction and substance abuse disorders.
  • The evolution of animal cooperation and conflict resolution.
  • The ecological and evolutionary dynamics of niche construction.
  • The role of microbiota in the regulation of host-microbe interactions.
  • The molecular mechanisms of gene regulation by non-coding RNAs.
  • The role of epigenetics in gene expression and regulation.
  • The molecular mechanisms of DNA damage response and repair.
  • The impact of environmental toxins on human health.
  • The evolutionary origins of viruses and their impact on hosts.
  • The genetics of aging and age-related diseases.
  • The impact of ocean acidification on marine organisms.
  • The molecular basis of cancer development and progression.
  • The genetic basis of behavior in animals.
  • The impact of environmental stressors on plant growth and productivity.
  • The evolution of sex determination and sexual selection.
  • The role of the immune system in host-microbe interactions.
  • The molecular mechanisms of circadian rhythms and sleep.
  • The impact of air pollution on respiratory health.
  • The genetic basis of speciation and hybridization.
  • The role of neurotransmitters in brain function and behavior.
  • The ecological dynamics of microbial communities in soil.
  • The impact of climate change on biodiversity and ecosystem services.
  • The molecular mechanisms of viral entry, replication, and release.
  • The genetics of plant domestication and diversification.
  • The role of mitochondrial DNA in aging and disease.
  • The impact of deforestation on ecosystem functioning.
  • The molecular basis of drug addiction and treatment.
  • The genetic basis of adaptation and evolution in response to environmental change.
  • The role of gut-brain signaling in behavior and disease.
  • The impact of noise pollution on wildlife populations.
  • The genetic basis of plant morphology and development.
  • The role of the microbiome in disease susceptibility and resistance.
  • The ecological dynamics of plant-insect interactions.
  • The impact of agricultural practices on soil health and biodiversity.
  • The molecular mechanisms of gene regulation in development and disease.
  • The genetic basis of complex traits in humans and animals.
  • The role of cytokines in immune response and inflammation.
  • The ecological dynamics of microbial communities in aquatic ecosystems.
  • The impact of plastic waste on marine ecosystems.
  • The molecular mechanisms of genome stability and repair.
  • The genetics of rare and common genetic diseases.
  • The role of the endocannabinoid system in health and disease.
  • The ecological dynamics of competition and cooperation in populations.
  • The impact of light pollution on wildlife behavior and ecology.
  • The genetic basis of animal migration and navigation.
  • The role of the microbiome in host metabolism and energy balance.
  • The impact of climate change on agricultural productivity and food security.
  • The molecular mechanisms of epigenetic inheritance and transmission.
  • The genetics of human brain development and disorders.
  • The role of pheromones in animal communication and behavior.
  • The ecological dynamics of host-microbe-pathogen interactions.
  • The effect of diet and nutrition on gut microbiome diversity and composition.
  • The ecology and evolution of microbial interactions in the soil.
  • The role of epigenetic modifications in cancer development and progression.
  • The impact of climate change on marine biodiversity and ecosystem functioning.
  • The molecular mechanisms of mitochondrial respiration and ATP synthesis.
  • The role of non-coding RNAs in gene regulation and disease.
  • The evolution and diversification of flowering plants.
  • The effects of artificial light at night on animal behavior and physiology.
  • The genetic basis of adaptation to extreme environments.
  • The ecology and evolution of plant-microbe interactions.
  • The physiological and behavioral effects of noise pollution on wildlife.
  • The molecular mechanisms of DNA methylation and histone modification.
  • The role of microbial communities in the cycling of nutrients in aquatic ecosystems.
  • The evolution of animal color vision and perception.
  • The ecological and evolutionary dynamics of mutualistic interactions.
  • The impact of deforestation on soil fertility and carbon storage.
  • The molecular mechanisms of viral replication and pathogenesis.
  • The role of microorganisms in the biodegradation of plastics.
  • The ecology and evolution of microbial communities in the human gut.
  • The physiological and behavioral effects of climate change on birds.
  • The impact of invasive species on native ecosystems.
  • The genetic basis of developmental disorders and intellectual disabilities.
  • The evolution of animal behavior and communication in response to anthropogenic change.
  • The ecological dynamics of soil carbon sequestration and storage.
  • The role of microbial communities in the decomposition of organic matter.
  • The physiological and behavioral effects of air pollution on plants.
  • The molecular mechanisms of cellular differentiation and tissue development.
  • The ecology and evolution of plant-animal interactions.
  • The genetic basis of resistance to herbicides and pesticides in crops.
  • The impact of urbanization on bird diversity and distribution.
  • The role of microorganisms in the cycling of carbon and nitrogen in soil.
  • The ecological and evolutionary dynamics of invasive species interactions.
  • The physiological and behavioral effects of climate change on reptiles and amphibians.
  • The role of microbial communities in the degradation of petroleum hydrocarbons.
  • The genetic basis of plant development and growth.
  • The evolution of animal migration and dispersal.
  • The impact of land use change on freshwater biodiversity.
  • The molecular mechanisms of membrane transport and ion channels.
  • The role of microorganisms in the cycling of sulfur and phosphorus in soil.
  • The physiological and behavioral effects of ocean acidification on marine organisms.
  • The genetic basis of behavior and personality traits in humans.
  • The evolution of plant reproductive strategies and pollination systems.
  • The ecological and evolutionary dynamics of predator-prey coevolution.
  • The impact of environmental stressors on gene expression and epigenetics.
  • The evolution of sexual reproduction and mating systems in plants.
  • The role of microorganisms in bioremediation of contaminated sites.
  • The physiological and behavioral effects of climate change on fish.
  • The molecular mechanisms of chromatin remodeling and gene regulation.
  • The genetic basis of adaptation to high altitude environments.
  • The ecology and evolution of plant-insect interactions.
  • The impact of pesticide use on insect biodiversity and ecosystem functioning.
  • The role of microorganisms in nitrogen fixation and cycling.
  • The genetic basis of neurodegenerative diseases and cognitive decline.
  • The evolution of social behavior and cooperation in animals.
  • The ecological and evolutionary dynamics of plant invasions.
  • The physiological and behavioral effects of noise pollution on humans.
  • The molecular mechanisms of RNA splicing and alternative splicing.
  • The role of microorganisms in biogeochemical cycling of trace elements.
  • The genetic basis of adaptation to extreme temperatures.
  • The ecology and evolution of microbial communities in soil and water.
  • The impact of climate change on insect phenology and distribution.
  • The molecular mechanisms of protein folding and misfolding.
  • The role of microorganisms in biodegradation of environmental pollutants.
  • The evolution of animal cognition and intelligence.
  • The ecological and evolutionary dynamics of predator-prey interactions.
  • The impact of anthropogenic noise on marine mammals.
  • The role of microorganisms in biofilm formation and quorum sensing.
  • The genetic basis of speciation and hybridization in plants.
  • The evolution of parental care and offspring development in animals.
  • The ecological and evolutionary dynamics of food web interactions.
  • The physiological and behavioral effects of air pollution on human health.
  • The molecular mechanisms of transcriptional regulation and gene expression.
  • The role of microorganisms in plant growth promotion and disease suppression.
  • The genetic basis of adaptation to drought stress in crops.
  • The ecology and evolution of microbial interactions in the ocean.
  • The impact of land use change on soil erosion and nutrient cycling.
  • The molecular mechanisms of autophagy and programmed cell death.
  • The role of microorganisms in biodegradation of pharmaceuticals.
  • The genetic basis of immune system variation and disease susceptibility.
  • The evolution of animal social networks and communication systems.
  • The ecological and evolutionary dynamics of biodiversity loss.
  • The physiological and behavioral effects of light pollution on nocturnal animals.
  • The molecular mechanisms of DNA repair and genome stability.
  • The role of microorganisms in the production of biofuels and bioplastics.
  • The genetic basis of adaptation to salinity stress in plants.
  • The ecology and evolution of microbial symbioses with plants and animals.
  • The impact of climate change on plant-pollinator interactions.
  • The molecular mechanisms of cellular senescence and aging.
  • The role of microorganisms in biodegradation of synthetic organic compounds.
  • The genetic basis of variation in complex traits in humans.
  • The evolution of animal social behavior and cultural transmission
  • The genetic basis of cancer development and progression.
  • The role of microorganisms in the gut microbiome and human health.
  • The genetic basis of phenotypic plasticity and adaptation in plants.
  • The evolution of animal migration and navigation.
  • The ecological and evolutionary dynamics of community assembly.
  • The physiological and behavioral effects of light and dark cycles on circadian rhythms.
  • The molecular mechanisms of protein synthesis and degradation.
  • The role of microorganisms in nitrogen and carbon cycling in aquatic ecosystems.
  • The genetic basis of sex determination and differentiation in animals.
  • The ecology and evolution of predator-prey coevolution.
  • The impact of anthropogenic activities on marine biodiversity and ecosystems.
  • The role of microorganisms in bioleaching and biomining of metals.
  • The genetic basis of inherited disorders and genetic diseases.
  • The evolution of animal social behavior and communication systems.
  • The ecological and evolutionary dynamics of competition and coexistence.
  • The physiological and behavioral effects of endocrine disruptors on human health.
  • The molecular mechanisms of cell division and mitosis.
  • The role of microorganisms in biodegradation of plastics and synthetic materials.
  • The genetic basis of epigenetic inheritance and regulation.
  • The ecology and evolution of mutualistic symbioses in plants and animals.
  • The impact of habitat fragmentation on species diversity and ecosystem functioning.
  • The role of microorganisms in bioremediation of oil spills.
  • The genetic basis of drug resistance in pathogens and cancer cells.
  • The evolution of animal personality and individual variation.
  • The ecological and evolutionary dynamics of biotic interactions in freshwater ecosystems.
  • The physiological and behavioral effects of artificial sweeteners on human health.
  • The molecular mechanisms of intracellular trafficking and secretion.
  • The role of microorganisms in biocontrol of plant pathogens and pests.
  • The genetic basis of hybridization and introgression in animals and plants.
  • The ecology and evolution of plant-pollinator mutualisms.
  • The impact of climate change on marine ecosystems and fisheries.
  • The molecular mechanisms of genome editing and gene therapy.
  • The role of microorganisms in biogas production and carbon capture.
  • The genetic basis of developmental disorders and birth defects.
  • The evolution of animal coloration and camouflage.
  • The ecological and evolutionary dynamics of invasive species.
  • The physiological and behavioral effects of air pollution on wildlife.
  • The molecular mechanisms of signal transduction and cell signaling.
  • The role of microorganisms in biodegradation of pharmaceuticals and personal care products.
  • The genetic basis of reproductive isolation and speciation.
  • The ecology and evolution of microbial interactions with plants and insects.
  • The impact of climate change on bird migration and breeding patterns.
  • The molecular mechanisms of protein-protein interactions and protein complexes.
  • The role of microorganisms in bioremediation of heavy metals.
  • The evolution of animal cognition and learning.
  • The ecological and evolutionary dynamics of biodiversity hotspots.
  • The impact of ocean acidification on marine ecosystems.
  • The genetics of complex diseases and personalized medicine.
  • The evolution of plant defense mechanisms against herbivores.
  • The role of microorganisms in soil carbon sequestration.
  • The physiological and behavioral effects of light on plant growth and development.
  • The molecular mechanisms of cancer metastasis and invasion.
  • The ecology and evolution of microbial communities in the human body.
  • The impact of climate change on migratory bird populations.

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200+ Fascinating Biology Research Topics for Students in 2024

Updated 24 Jul 2024

Biology Research Topics

Finding a great topic for a study can be challenging. Interesting biology topics need to be appealing, attention-grabbing and academically relevant. They need to deal with the recent findings and debatable questions. A great topic is a base of a scientific argument that has a valuable idea for the science. It also should provoke further discussion and lead to further coming studies.

College students have a hard time choosing the fascinating subject for their paper. That’s why these biology research paper topics can give you inspiration. You can pick one for your research or use them as the base for building your own idea.

Read also:  How to Write an Introduction to a Research Paper

A List of Researchable Topics for Biology 

A list of researchable topics for biology students starts with several interesting biological topics concerning sociological perspective and ethical issues. The most debatable subjects are abortion, human cloning, genetic researches and the new ethics that should be created to resolve these issues.

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What are some good biology research topics?

One could also find good research topics related to traditional biology subfields like plant and animal biology, ecology (current global problems warrant a number of hot topics), or topics related to humans: neurobiology (and determinants of human behavior), recent discoveries on diseases and the immune system, etc.

What are the major biological issues today?

They include pollution challenges, overpopulation, an increase in infectious diseases, and the lack of transparency in DNA and synthetic biology studies. We also have biological issues like global warming, endangered species, stem cell research, and the acidification of the ocean.

Read also: How can I find a trusted service to write my research paper ?

Biology Research Topics for College Students

When you choose a competitive Biology subject, you must focus on ideas that inspire you and talk about morphology, physiology, cell studies, origins, distribution, and innovations related to living organisms. You can also talk about the plants, the animals, or even famous personalities in the field.

  • Developmental Biology and Aging: Exploring New Discoveries in Lifespan Extension Research
  • The Role of Microbiomes in Ecosystem Health: A Look into the Microscopic Regulators of Ecological Balance
  • CRISPR and Beyond: Advanced Genetic Editing Techniques Emerging in 2023
  • Bioengineering and Sustainability: Harnessing Synthetic Biology for a Greener Future
  • Revolutionizing Drug Discovery with Synthetic Biology: Progress and Prospects in 2023
  • Challenges and Ethical Implications of Synthetic Biology: A Thorough Discussion on Genetically Modified Organisms
  • The Use of The Advanced X-Ray for The Scanning of The Plants
  • The Pros and Cons of The Cryo-EM Pattern in Virology
  • The Use of 3D Models for The Microscopic Examination of Living Cells
  • The Heritage of Jose Rizal and The Experiments Related to The Garden in Dapitan
  • Understanding the Role of Epigenetics in Human Development: Current Research and Perspectives
  • Heredity and Genetics Through The Lens of Autism: The Theories
  • Novel Approaches to Conservation: How Modern Ecological Research Aids in Species Preservation
  • Genetic Engineering and The Modern Survival of Life Mechanisms
  • How Can The Energy Be Transformed Into Living Things
  • Immune System of The Dolphins Compared to The Whales
  • Primary Productivity in a Limited Ecosystem: The Role of The Social Community
  • The Production of Hormones Without an Endocrine System: The Metabolism of The Plants

Abortion, Human cloning, Genetic Researches Biology Topics

  • Presentation on Abortion Law & Society’s Perspective in the USA
  • How Abortion is Related to the Feminist Ideology
  • The Biological Insights of Abortion
  • Human Cloning & Transplantation Possibilities
  • Project on Different Types of Cloning
  • DNA Structure, Genetic Disorders, and Modern Technology
  • History and Development of Human Cloning Science
  • Cloning: The Moral Aspect
  • How Cloning Can Change Medicine
  • What We Actually Know About DNA-modified Organisms
  • The Influence of Genetics on Disease Susceptibility: Current Research in Personalized Medicine
  • Genetic Grounds for Obesity
  • Is Homosexuality Genetically Based?
  • How Addictive Substances Affect Our Genes
  • Depression & Genes
  • Are Genetically Modified Foods Safe?
  • Should Human Cloning Be Legal?
  • The Advantages of Transgenic Crops
  • Factors Contributing to Genetic Mutations
  • Organ Transplantation: Is Donor’s Consent Needed?
  • Ethics Behind Transplantation
  • How Public Opinion Holds Back the Scientific Progress

DNA Research Topics

  • The Pros and Cons of Family Genetic Testing: Mental Implications and The Abuse of Data
  • Unraveling the Secrets of Junk DNA: New Insights into Non-Coding Regions and Their Roles
  • Structured Controversy of DNA Alterations: What Ethical Principles Must be Followed
  • Should DNA Alternation be Made Available when no Genetic Diseases are Involved?
  • Inhibitors of Bacterial DNA and Resistance Mechanisms
  • Bio-nano Technologies and The Covid-19 Pandemic: What Have We Learned
  • Should DNA Research be Conducted on Animals and Plants: The Dangers Ahead
  • Various Genetic Diseases and The Use of DNA Sequencing
  • The Pros and Cons of The Protein-coding Approach to Regulatory Regions
  • An Ethical Side of Selective Breeding and Damage to Reproductive Technologies
  • Embryo Screening and Cloning: The Bioethical Aspect of Research
  • DNA Modifications in Humans
  • Can DNA Change Beat Aging?

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Behaviour and Hormones Biology Research Topics

Another huge part of biology research essay topics deals with the question of behavior and hormones. Students can share ideas on how our hormones influence mood and well-being. They can also be related to some disorders.

  • Report on the Significance of Certain Hormones Concerning the Body Functioning
  • Cell Structure & Antibiotic Resistance
  • Hormones Influence on Mind and Behavior
  • How Hormones Contribute to Depression
  • Hormonal Changes During Pregnancy
  • Psychological Disorders: The Biological Basis
  • Biology Behind the Bipolar Disorder
  • Cortisol and Testosterone Influence Risk-Taking
  • Current Oxytocin Science
  • Oxytocin and Fear Reaction
  • Endocrine-Related Diseases
  • How Hormones Affect Human Behavior
  • Hormonal Control of Reproductive System
  • Influence of Hormonal Therapy
  • Endocrinology and Metabolism
  • Hormone-Specific Psychopathic Disorders
  • Melatonin in Therapy
  • Steroid Hormones’ Path to Cells
  • Cardio Exercise Influence Hormones
  • Oxytocin in Treatment Psychopathic Disorders
  • How Hormones Influence Women’s Mental Health
  • Gender Specifics Related to Mental Health
Read also: 100 The Most Impressive Social Issues Topics for Essay or Paper

Immune System Biology Research Topics

Biology topics to write about cannot be full without at least several ones dealing with the immune system. It is our main defense against different diseases, that’s why it is important to know more about it.

  • Human Immune System and Its Resistance Capabilities
  • How Do Immune System Agents Function?
  • Discovering Diseases Caused by Immune System not Functioning Good
  • Immunity & Stress
  • Tolerance & Autoimmunity
  • Asthma & Allergic Reactions
  • Immunotherapy Influence on Human Body
  • Immunology & Transplantation
  • Graft Rejection Prevention
  • Vaccination: Are There Any Real Benefits?
  • The Society’s Perspective on Vaccination

Cell Biology Research Topics

It is a complex branch of biology that studies the smallest units and the living organisms. The focus is on the parts of the cell and the interaction of the cytoplasm and the membrane as the topic ideas below show:

  • The Pros And Cons Of The Cytoskeleton System Through The Lens Of Cell Motility.
  • Investigating Cellular Dynamics in Early Human Development: Cutting Edge Techniques and Discoveries in 2023.
  • Analysis Of Cell Division And The AI-based Methods Of Cell Cycle Control.
  • The Role Of Chromatin In The Alterations Of Gene Expression.
  • What Causes Cellular Metabolism In Marine Mammals.
  • The Use Of Hormone Action Therapy In College Athletics.
  • The Most Common Cell Infections And The Immunity Challenges.
  • The Alteration Of Ribosomes And The Cell Membrane Functioning.
  • The Heritage Of Robert Brown And The Nucleus.
  • The Importance Of The Cork Tree Cell For Cell Biology.
  • Analysis Of Multicellular Organisms And The Use Of Molecular Analysis Tools.

Molecular Biology Research Topics

The branch of Molecular Biology focuses on the analysis of composition, structure, and complex interactions related to processes taking place in the cells. Unlike basic microbiology, it studies biological processes like alteration, recreation, and maintenance.

  • The Use Of Comparative Genomics Of The Human Being And The Mice.
  • The Restrictions Of The DNA And Peculiarities Of The Modern Nucleic Acid Analysis.
  • An Ethical Aspect Of Molecular Genetics.
  • The Most Efficient Methods Of RNA Translation Into Proteins.
  • What Is The Current State Of The DNA Replication And The Amplification Methods.
  • The Limitations Of The Microarray Data Analysis.
  • Is It Possible To Repair The Damage Done To The Human DNA?
  • The Pros And Cons Of The Aseptic Technique: Transfection Methods.
  • Purification Of The DNA: How Does Protein Purification Change Over Time?
  • What Are The Objectives Of The Nucleic Acid Hybridization During The Gene Cloning Process?

Plant Pathology Biology Research Topics

Here are several interesting biology research topics concerning plant pathology:

  • Natural Disease Resistance in Plants
  • The Prevention Measures in Plant Pathology
  • Research on Plant-Associated Microbes and Current Genomic Tools
  • Literature Review on Microbial Ecology and Evolution
  • Plant Diseases Management Facilitated by Modern Technology
  • Plant Evolutionary Genetics
  • Weedy & Invasive Plants
  • Photosynthesis: Aspects & Functions
  • Fertilizers’ Influence on Plants
  • The Impact of Climate Change on Plant Disease Patterns
  • Genetic Engineering for Disease Resistance in Crops
  • Biocontrol Methods in Managing Plant Pathogens
  • The Role of Soil Microbiome in Plant Disease Suppression
  • Emerging Fungal Pathogens in Agricultural Crops
  • Plant-Virus Interactions and Disease Management
  • The Effects of Pesticides on Non-Target Plant Pathogens
  • Detection and Diagnosis of Plant Pathogens Using Molecular Techniques
  • Epidemiology of Plant Diseases in Changing Agricultural Landscapes
  • Resistance Mechanisms in Plants Against Bacterial Pathogens
  • The Impact of Invasive Species on Plant Disease Dynamics

Ecology-concerning Subjects Biology Research Topics

Undergraduates can do a proposal on Ecology-concerning subjects. First, it is one of the most relevant scientific fields as we deal with the results of human behavior all the time. Any new cool paper can shed some light of new ideas that will contribute to making the world a better place.

  • Ecological and Evolutionary Factors Influencing Animal Behavior
  • Essay on Relationship Between Living Forms and Their Environment
  • The Affect of Human Behavior on Animal Forms in the USA
  • The Ways Animal and Plants Respond to Changing Environment
  • Developmental Mechanism of Resistance in Animals
  • The Environmental Change and its Involvement in the Diversity of Species
  • Is Global Warming Really a Threat?
  • Fast Food Industry & Tropic Forests Extinction
  • Environmental Psychology
  • Means of Wildlife Protection
  • Impact of Rain Forests Extinction
  • Rare Species Protection
  • The Problem of Extinction
  • Renewable Energy and Environment’s Pollution
  • Climate Change and Biodiversity
  • Types of Pollution in Modern World
  • What is Sustainability in Biology?
  • Non-human factors of Extinction of Species
  • Benefits of Ecotourism
  • Is Extinction of Bees Real?
  • Oil Spill Effects on Ocean Wildlife
  • Factors and benefits of Organic Farming

Neurobiology Research Topics

Neurobiology Research Topics

  • Visual Cortex & Models of Orientation
  • Neuroscience in Robotic Technologies
  • What is Visual-Motor Coordination Based On?
  • Impact of Music on Human Brain
  • Brain Injuries and Related Disorders
  • Brain and Memory
  • Brain Capabilities of Self-Repairing
  • Genetic Defect That Contributes to Schizophrenia
  • Factors and Causes Behind a Migraine
  • Connection Between Gut Bacteria and Anxiety
  • Can Gut Bacteria Contribute to Depression?
  • Cognitive Neuroscience on Problem-Solving
  • Genes and Proteins Responsible for Neurons functioning

Evolutionary Biology Research Topics

As the title implies, evolutionary biology focuses on the processes that explore the history of life forms that we encounter. Starting with the study of the natural habitats to the analysis of the biodiversity and related behaviors, it's one of the most fascinating and varied branches of Biology.

  • The Natural vs Forced Evolutionary Processes as Natural Selection Takes Place
  • How Can We Increase Human Awareness about The Importance of Diversity of Life on Earth
  • The Heritage of Charles Darwin and Why His Theories are Still Relevant Today
  • The Evolutionary Biology Processes Through The Lens of The Invertebrates
  • How Do Ecology and Evolution Affect The Presence of Infectious Diseases
  • Human Learning Processes and The Use of AI-based Models to Predict Evolution
  • The Theory of Gene Migration and The Philosophical Importance of Spiritual Freedom
  • The Importance of Evidence for The Evolution Processes: Our Common Ancestors
  • What Types of Changes are Considered an Evolution When a Gene Pool Is Involved?
  • Individualism as The Form of The Forced Evolution: An Ethical Aspect

Animals Biology Research Topics

Here are fascinating biology research topics related to animals. They are quite popular among students. You can submit several papers dwelling on deep analysis of one phenomenon or species.

  • Factors Concerning Animal Growth
  • The Obesity in Home Pets
  • Traditional Dog Diet and Modern Home Pets
  • Male Pregnancy Among Animals
  • Is Beauty Products Testing on Animals Ethical?
  • Birds Behavioral Study
  • Animal Science & Food Sustainability
  • Does Veganism Actually Influence Meat Production?
  • Wild Animal Projects
  • Fashion Industry & Animal Abuse
  • Camouflage Mechanism in Sea Animals
  • Discovering Primate Language and Cognitive Function
Read also: Your personal  lab report writing service - EduBirdie!

Marine Biology Research Topics

Marine biology relates to a mixture of Biology, Chemistry, and Physics as one studies marine organisms and their behavior patterns. As marine biologists study how they interact with the environment, they use oceanography and relevant skills based on Chemistry, Physics, and Geology.

  • The Salish Sea Ecology and The Use of Corals for The Understanding of Tropical Peculiarities
  • The Challenges Of Quantitative Ecology Through The Lens Of Modeling
  • How Can Marine Animal Behavior Be Adapted To A Certain Genetical Pool?
  • Geological Oceanography: What Are The Challenges Related To Physical Limitations?
  • Comparison Of The Smallest Diatoms And Their Marine Logistics
  • Tourism And The Changes To The Coral Reef Ecology In 2022
  • Marine Engineering And The Use Of Flexible Aquaculture
  • Development Of Alternative Feeds For The Dolphins And The Tracking Systems
  • What Are The Pros And Cons Of The Coastal Zone Management Currently Used In The United States?
  • Biochemistry Of The Red Sea Compared To The Sea Of Azov
  • The Effects of Ocean Acidification on Coral Reefs
  • Marine Biodiversity in Deep-Sea Ecosystems
  • The Impact of Plastic Pollution on Marine Life
  • Conservation Strategies for Endangered Marine Species
  • The Role of Mangroves in Coastal Ecosystems
  • Marine Biotechnology and its Applications
  • The Effects of Climate Change on Marine Migration Patterns
  • Sustainable Fishing Practices and Marine Ecosystems
  • Marine Microorganisms and their Role in the Ecosystem
  • The Impact of Human Activities on Coastal Habitats

Topics on the History of Biology

There also easy issues related to the history of Biology. You can dwell on the capstone of modern science or dwell on an understanding of one crucial academic term.

  • The History of Genetics
  • Darwin’s Theory and Biology
  • Discovering Evolution Factors
  • How Archeology Impacts Animal Biology?
  • Natural Selection Theory: The Discovery and Its Impact
  • Effects of Whale Hunting
  • Dead Branches of Evolution
  • Famous Biologist Antonie van Leeuwenhoek
  • Edward Jenner and the History of Vaccination
  • Rachel Carson’s Perspective on Environmental Safety
  • Stephen Jay Gold’s Paleontology: How History and Biology are Combined
  • The Development of Cell Theory and its Impact on Biology
  • Contributions of Charles Darwin to Evolutionary Biology
  • The History of Genetics: From Mendel to Modern Genomics
  • The Discovery and Significance of DNA Structure
  • The Role of Women in the Advancement of Biology
  • The Evolution of Microbiology and the Discovery of Microorganisms
  • The Impact of Technology on the Progress of Biological Sciences
  • Historical Perspectives on Human Anatomy Studies
  • The Development of Ecological Theory and Conservation Biology

This list ends with several other fascinating research proposal topics, such as:

  • Molecular and Genome Evolution
  • Comparative Genomics
  • The Evolutionary Biology of Infectious Diseases
  • Modern Technology and Scientific Tools in Biology
  • Neurobiological Explanation of Sleep
  • Symbiosis in Parasites
  • Metabolism & Physical Exercise

How do you choose a research topic?

When choosing a research topic, it's crucial to consider your own curiosity and passion in the subject matter. This personal connection not only makes the research process more engaging but also often leads to more diligent and thorough work. Additionally, the topic should have a significant impact or relevance in the current state of the field. This involves considering the interests of potential readers or the audience, ensuring that the topic is not only of personal interest but also of broader academic or societal importance.

Furthermore, the selection process should involve an assessment of the current state of knowledge in the field. This includes reviewing recent advances, perspective-changing publications, and ongoing debates within the discipline. A good research topic often lies at the intersection of what is currently known and the unexplored or less understood aspects of the field. By focusing on these areas, your research paper examples can contribute to the advancement of knowledge, offering new insights or solutions to existing problems. In summary, the ideal research topic is one that sparks personal interest, addresses a gap or a pressing question in the field, and has the potential to contribute meaningfully to the broader academic community.

Read also: If you are willing to  pay someone to write a research paper , let professionals write it for you. 

Start to Write Well-Grounded Biology Research

These Biology research paper topics were compiled for anyone from high-school and undergraduate students to anyone who has to deal with Biology for any reason. It all depends on the size and depths of your project, that is why you may need a proper  research paper help . The topics concern the most relevant and appealing part of biological science. Start working on your thesis with reading academic literature and don't forget to ask for thesis writing help at EduBirdie. A proper review of recent publications will help you build up an argument. Always remember that the key to any of your projects is having fun. So choose the topic that you are passionate about, and go for it!

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Education During Coronavirus

A Smithsonian magazine special report

Science | June 15, 2020

Seventy-Five Scientific Research Projects You Can Contribute to Online

From astrophysicists to entomologists, many researchers need the help of citizen scientists to sift through immense data collections

Citizen science (mobile)

Rachael Lallensack

Former Assistant Editor, Science and Innovation

If you find yourself tired of streaming services, reading the news or video-chatting with friends, maybe you should consider becoming a citizen scientist. Though it’s true that many field research projects are paused , hundreds of scientists need your help sifting through wildlife camera footage and images of galaxies far, far away, or reading through diaries and field notes from the past.

Plenty of these tools are free and easy enough for children to use. You can look around for projects yourself on Smithsonian Institution’s citizen science volunteer page , National Geographic ’s list of projects and CitizenScience.gov ’s catalog of options. Zooniverse is a platform for online-exclusive projects , and Scistarter allows you to restrict your search with parameters, including projects you can do “on a walk,” “at night” or “on a lunch break.”

To save you some time, Smithsonian magazine has compiled a collection of dozens of projects you can take part in from home.

A blue heron caught on a trail cam.

American Wildlife

If being home has given you more time to look at wildlife in your own backyard, whether you live in the city or the country, consider expanding your view, by helping scientists identify creatures photographed by camera traps. Improved battery life, motion sensors, high-resolution and small lenses have made camera traps indispensable tools for conservation.These cameras capture thousands of images that provide researchers with more data about ecosystems than ever before.

Smithsonian Conservation Biology Institute’s eMammal platform , for example, asks users to identify animals for conservation projects around the country. Currently, eMammal is being used by the Woodland Park Zoo ’s Seattle Urban Carnivore Project, which studies how coyotes, foxes, raccoons, bobcats and other animals coexist with people, and the Washington Wolverine Project, an effort to monitor wolverines in the face of climate change. Identify urban wildlife for the Chicago Wildlife Watch , or contribute to wilderness projects documenting North American biodiversity with The Wilds' Wildlife Watch in Ohio , Cedar Creek: Eyes on the Wild in Minnesota , Michigan ZoomIN , Western Montana Wildlife and Snapshot Wisconsin .

"Spend your time at home virtually exploring the Minnesota backwoods,” writes the lead researcher of the Cedar Creek: Eyes on the Wild project. “Help us understand deer dynamics, possum populations, bear behavior, and keep your eyes peeled for elusive wolves!"

A baby elephant stands between the legs of an adult elephant.

If being cooped up at home has you daydreaming about traveling, Snapshot Safari has six active animal identification projects. Try eyeing lions, leopards, cheetahs, wild dogs, elephants, giraffes, baobab trees and over 400 bird species from camera trap photos taken in South African nature reserves, including De Hoop Nature Reserve and Madikwe Game Reserve .

With South Sudan DiversityCam , researchers are using camera traps to study biodiversity in the dense tropical forests of southwestern South Sudan. Part of the Serenegeti Lion Project, Snapshot Serengeti needs the help of citizen scientists to classify millions of camera trap images of species traveling with the wildebeest migration.

Classify all kinds of monkeys with Chimp&See . Count, identify and track giraffes in northern Kenya . Watering holes host all kinds of wildlife, but that makes the locales hotspots for parasite transmission; Parasite Safari needs volunteers to help figure out which animals come in contact with each other and during what time of year.

Mount Taranaki in New Zealand is a volcanic peak rich in native vegetation, but native wildlife, like the North Island brown kiwi, whio/blue duck and seabirds, are now rare—driven out by introduced predators like wild goats, weasels, stoats, possums and rats. Estimate predator species compared to native wildlife with Taranaki Mounga by spotting species on camera trap images.

The Zoological Society of London’s (ZSL) Instant Wild app has a dozen projects showcasing live images and videos of wildlife around the world. Look for bears, wolves and lynx in Croatia ; wildcats in Costa Rica’s Osa Peninsula ; otters in Hampshire, England ; and both black and white rhinos in the Lewa-Borana landscape in Kenya.

An image featuring marine life from Invader ID.

Under the Sea

Researchers use a variety of technologies to learn about marine life and inform conservation efforts. Take, for example, Beluga Bits , a research project focused on determining the sex, age and pod size of beluga whales visiting the Churchill River in northern Manitoba, Canada. With a bit of training, volunteers can learn how to differentiate between a calf, a subadult (grey) or an adult (white)—and even identify individuals using scars or unique pigmentation—in underwater videos and images. Beluga Bits uses a “ beluga boat ,” which travels around the Churchill River estuary with a camera underneath it, to capture the footage and collect GPS data about the whales’ locations.

Many of these online projects are visual, but Manatee Chat needs citizen scientists who can train their ear to decipher manatee vocalizations. Researchers are hoping to learn what calls the marine mammals make and when—with enough practice you might even be able to recognize the distinct calls of individual animals.

Several groups are using drone footage to monitor seal populations. Seals spend most of their time in the water, but come ashore to breed. One group, Seal Watch , is analyzing time-lapse photography and drone images of seals in the British territory of South Georgia in the South Atlantic. A team in Antarctica captured images of Weddell seals every ten minutes while the seals were on land in spring to have their pups. The Weddell Seal Count project aims to find out what threats—like fishing and climate change—the seals face by monitoring changes in their population size. Likewise, the Año Nuevo Island - Animal Count asks volunteers to count elephant seals, sea lions, cormorants and more species on a remote research island off the coast of California.

With Floating Forests , you’ll sift through 40 years of satellite images of the ocean surface identifying kelp forests, which are foundational for marine ecosystems, providing shelter for shrimp, fish and sea urchins. A project based in southwest England, Seagrass Explorer , is investigating the decline of seagrass beds. Researchers are using baited cameras to spot commercial fish in these habitats as well as looking out for algae to study the health of these threatened ecosystems. Search for large sponges, starfish and cold-water corals on the deep seafloor in Sweden’s first marine park with the Koster seafloor observatory project.

The Smithsonian Environmental Research Center needs your help spotting invasive species with Invader ID . Train your eye to spot groups of organisms, known as fouling communities, that live under docks and ship hulls, in an effort to clean up marine ecosystems.

If art history is more your speed, two Dutch art museums need volunteers to start “ fishing in the past ” by analyzing a collection of paintings dating from 1500 to 1700. Each painting features at least one fish, and an interdisciplinary research team of biologists and art historians wants you to identify the species of fish to make a clearer picture of the “role of ichthyology in the past.”

Pictured is a Zerene eurydice specimen, or California dogface butterfly, caught in 1951.

Interesting Insects

Notes from Nature is a digitization effort to make the vast resources in museums’ archives of plants and insects more accessible. Similarly, page through the University of California Berkeley’s butterfly collection on CalBug to help researchers classify these beautiful critters. The University of Michigan Museum of Zoology has already digitized about 300,000 records, but their collection exceeds 4 million bugs. You can hop in now and transcribe their grasshopper archives from the last century . Parasitic arthropods, like mosquitos and ticks, are known disease vectors; to better locate these critters, the Terrestrial Parasite Tracker project is working with 22 collections and institutions to digitize over 1.2 million specimens—and they’re 95 percent done . If you can tolerate mosquito buzzing for a prolonged period of time, the HumBug project needs volunteers to train its algorithm and develop real-time mosquito detection using acoustic monitoring devices. It’s for the greater good!

Pelicans coming in for landing on PELIcam.

For the Birders

Birdwatching is one of the most common forms of citizen science . Seeing birds in the wilderness is certainly awe-inspiring, but you can birdwatch from your backyard or while walking down the sidewalk in big cities, too. With Cornell University’s eBird app , you can contribute to bird science at any time, anywhere. (Just be sure to remain a safe distance from wildlife—and other humans, while we social distance ). If you have safe access to outdoor space—a backyard, perhaps—Cornell also has a NestWatch program for people to report observations of bird nests. Smithsonian’s Migratory Bird Center has a similar Neighborhood Nest Watch program as well.

Birdwatching is easy enough to do from any window, if you’re sheltering at home, but in case you lack a clear view, consider these online-only projects. Nest Quest currently has a robin database that needs volunteer transcribers to digitize their nest record cards.

You can also pitch in on a variety of efforts to categorize wildlife camera images of burrowing owls , pelicans , penguins (new data coming soon!), and sea birds . Watch nest cam footage of the northern bald ibis or greylag geese on NestCams to help researchers learn about breeding behavior.

Or record the coloration of gorgeous feathers across bird species for researchers at London’s Natural History Museum with Project Plumage .

A pressed Wister's coralroot below a letter and sketch of the flower found in Oct. 1937

Pretty Plants

If you’re out on a walk wondering what kind of plants are around you, consider downloading Leafsnap , an electronic field guide app developed by Columbia University, the University of Maryland and the Smithsonian Institution. The app has several functions. First, it can be used to identify plants with its visual recognition software. Secondly, scientists can learn about the “ the ebb and flow of flora ” from geotagged images taken by app users.

What is older than the dinosaurs, survived three mass extinctions and still has a living relative today? Ginko trees! Researchers at Smithsonian’s National Museum of Natural History are studying ginko trees and fossils to understand millions of years of plant evolution and climate change with the Fossil Atmospheres project . Using Zooniverse, volunteers will be trained to identify and count stomata, which are holes on a leaf’s surface where carbon dioxide passes through. By counting these holes, or quantifying the stomatal index, scientists can learn how the plants adapted to changing levels of carbon dioxide. These results will inform a field experiment conducted on living trees in which a scientist is adjusting the level of carbon dioxide for different groups.

Help digitize and categorize millions of botanical specimens from natural history museums, research institutions and herbaria across the country with the Notes from Nature Project . Did you know North America is home to a variety of beautiful orchid species? Lend botanists a handby typing handwritten labels on pressed specimens or recording their geographic and historic origins for the New York Botanical Garden’s archives. Likewise, the Southeastern U.S. Biodiversity project needs assistance labeling pressed poppies, sedums, valerians, violets and more. Groups in California , Arkansas , Florida , Texas and Oklahoma all invite citizen scientists to partake in similar tasks.

A group of Harvard computers and astronomers.

Historic Women in Astronomy

Become a transcriber for Project PHaEDRA and help researchers at the Harvard-Smithsonian Center for Astrophysics preserve the work of Harvard’s women “computers” who revolutionized astronomy in the 20th century. These women contributed more than 130 years of work documenting the night sky, cataloging stars, interpreting stellar spectra, counting galaxies, and measuring distances in space, according to the project description .

More than 2,500 notebooks need transcription on Project PhaEDRA - Star Notes . You could start with Annie Jump Cannon , for example. In 1901, Cannon designed a stellar classification system that astronomers still use today. Cecilia Payne discovered that stars are made primarily of hydrogen and helium and can be categorized by temperature. Two notebooks from Henrietta Swan Leavitt are currently in need of transcription. Leavitt, who was deaf, discovered the link between period and luminosity in Cepheid variables, or pulsating stars, which “led directly to the discovery that the Universe is expanding,” according to her bio on Star Notes .

Volunteers are also needed to transcribe some of these women computers’ notebooks that contain references to photographic glass plates . These plates were used to study space from the 1880s to the 1990s. For example, in 1890, Williamina Flemming discovered the Horsehead Nebula on one of these plates . With Star Notes, you can help bridge the gap between “modern scientific literature and 100 years of astronomical observations,” according to the project description . Star Notes also features the work of Cannon, Leavitt and Dorrit Hoffleit , who authored the fifth edition of the Bright Star Catalog, which features 9,110 of the brightest stars in the sky.

A microscopic image of white blood cells

Microscopic Musings

Electron microscopes have super-high resolution and magnification powers—and now, many can process images automatically, allowing teams to collect an immense amount of data. Francis Crick Institute’s Etch A Cell - Powerhouse Hunt project trains volunteers to spot and trace each cell’s mitochondria, a process called manual segmentation. Manual segmentation is a major bottleneck to completing biological research because using computer systems to complete the work is still fraught with errors and, without enough volunteers, doing this work takes a really long time.

For the Monkey Health Explorer project, researchers studying the social behavior of rhesus monkeys on the tiny island Cayo Santiago off the southeastern coast of Puerto Rico need volunteers to analyze the monkeys’ blood samples. Doing so will help the team understand which monkeys are sick and which are healthy, and how the animals’ health influences behavioral changes.

Using the Zooniverse’s app on a phone or tablet, you can become a “ Science Scribbler ” and assist researchers studying how Huntington disease may change a cell’s organelles. The team at the United Kingdom's national synchrotron , which is essentially a giant microscope that harnesses the power of electrons, has taken highly detailed X-ray images of the cells of Huntington’s patients and needs help identifying organelles, in an effort to see how the disease changes their structure.

Oxford University’s Comprehensive Resistance Prediction for Tuberculosis: an International Consortium—or CRyPTIC Project , for short, is seeking the aid of citizen scientists to study over 20,000 TB infection samples from around the world. CRyPTIC’s citizen science platform is called Bash the Bug . On the platform, volunteers will be trained to evaluate the effectiveness of antibiotics on a given sample. Each evaluation will be checked by a scientist for accuracy and then used to train a computer program, which may one day make this process much faster and less labor intensive.

12 images from the platform showcasing different galactic formations

Out of This World

If you’re interested in contributing to astronomy research from the comfort and safety of your sidewalk or backyard, check out Globe at Night . The project monitors light pollution by asking users to try spotting constellations in the night sky at designated times of the year . (For example, Northern Hemisphere dwellers should look for the Bootes and Hercules constellations from June 13 through June 22 and record the visibility in Globe at Night’s app or desktop report page .)

For the amateur astrophysicists out there, the opportunities to contribute to science are vast. NASA's Wide-field Infrared Survey Explorer (WISE) mission is asking for volunteers to search for new objects at the edges of our solar system with the Backyard Worlds: Planet 9 project .

Galaxy Zoo on Zooniverse and its mobile app has operated online citizen science projects for the past decade. According to the project description, there are roughly one hundred billion galaxies in the observable universe. Surprisingly, identifying different types of galaxies by their shape is rather easy. “If you're quick, you may even be the first person to see the galaxies you're asked to classify,” the team writes.

With Radio Galaxy Zoo: LOFAR , volunteers can help identify supermassive blackholes and star-forming galaxies. Galaxy Zoo: Clump Scout asks users to look for young, “clumpy” looking galaxies, which help astronomers understand galaxy evolution.

If current events on Earth have you looking to Mars, perhaps you’d be interested in checking out Planet Four and Planet Four: Terrains —both of which task users with searching and categorizing landscape formations on Mars’ southern hemisphere. You’ll scroll through images of the Martian surface looking for terrain types informally called “spiders,” “baby spiders,” “channel networks” and “swiss cheese.”

Gravitational waves are telltale ripples in spacetime, but they are notoriously difficult to measure. With Gravity Spy , citizen scientists sift through data from Laser Interferometer Gravitational­-Wave Observatory, or LIGO , detectors. When lasers beamed down 2.5-mile-long “arms” at these facilities in Livingston, Louisiana and Hanford, Washington are interrupted, a gravitational wave is detected. But the detectors are sensitive to “glitches” that, in models, look similar to the astrophysical signals scientists are looking for. Gravity Spy teaches citizen scientists how to identify fakes so researchers can get a better view of the real deal. This work will, in turn, train computer algorithms to do the same.

Similarly, the project Supernova Hunters needs volunteers to clear out the “bogus detections of supernovae,” allowing researchers to track the progression of actual supernovae. In Hubble Space Telescope images, you can search for asteroid tails with Hubble Asteroid Hunter . And with Planet Hunters TESS , which teaches users to identify planetary formations, you just “might be the first person to discover a planet around a nearby star in the Milky Way,” according to the project description.

Help astronomers refine prediction models for solar storms, which kick up dust that impacts spacecraft orbiting the sun, with Solar Stormwatch II. Thanks to the first iteration of the project, astronomers were able to publish seven papers with their findings.

With Mapping Historic Skies , identify constellations on gorgeous celestial maps of the sky covering a span of 600 years from the Adler Planetarium collection in Chicago. Similarly, help fill in the gaps of historic astronomy with Astronomy Rewind , a project that aims to “make a holistic map of images of the sky.”

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Rachael Lallensack

Rachael Lallensack | READ MORE

Rachael Lallensack is the former assistant web editor for science and innovation at Smithsonian .

Biology Research Projects for High School Students

biology research project

Indigo Research Team

Biology Project Ideas for High School Students

Are you looking for biology-related topics for your high school research project? If yes, then you have come to the right place. 

We do understand that finding the right topic for research that connects with you can be challenging. This is particularly true for the field of biology since it is very diverse. A good biology project needs to have enough scientific research backing it so that it helps support or disprove your hypothesis. 

This article is all about easy and interesting research projects designed just for keen high school students. We'll explore topics in the domain of the human body, ecosystems, diseases and their treatments, and more. 

Biology Project Ideas For High Schoolers

Here's a carefully curated compilation of cool biology topics to inspire and kick-start your creativity. We have broken the list into categories so that it's easier for you to navigate projects that fall into your interest.

Human Body Project Ideas

The human body is said to be the most complicated biological machine, which opens room for good research topics .  Let's check out some exciting project ideas about the human body.

biology research project

1. Exploring the Rate of Cognitive Decline at Different Elevations

At higher altitudes, there's a reduction in oxygen partial pressure, impacting blood oxygenation and potentially influencing brain function. If you've ever experienced altitude sickness, you've felt the effects of this phenomenon. The decrease in atmospheric pressure at elevated altitudes results in lower partial pressures of gases, including vital oxygen necessary for our bodily functions.

This project can investigate the impact of sudden increased elevation, such as climbing Denali, on brain health and cognition. Additionally, you can also explore whether continuous exposure to high elevations might contribute to an increased risk of dementia. This biology research project can also analyze published studies examining the correlation between altitude and cognitive brain functions. ‍

2. Making a Visual Guide for Blood Vessel Formation

Create an illustration using online images to showcase the process of blood vessel development. In this project, you can search existing research to understand the current knowledge about how blood vessels form and grow. Then, you can use this gathered information to design a graphic explaining how the network of blood vessels, known as vasculature, takes shape.

This is one of the most interesting human biology project ideas that aims to convey scientific concepts visually, making the information more accessible to a broader audience. ‍

3. Exploring Bacterial Communities in Different Homes

If you’re looking for immune system project ideas, this might be it for you. Bacterial microbiomes are groups of bacteria living on or around living things. These communities of tiny cells are essential for our health, helping with digestion and keeping our immune system in check. The microorganisms in our body outnumber our own cells by approximately 10:1. This project mainly focuses on figuring out how the bacteria on our skin differ between people from different households. To execute this biology project, you can create various bacterial media at home and select other microorganisms. 

Note: While conducting research, avoid abrasions, needle sticks, or cuts to avoid getting bacterial infections. Wearing safety goggles, a face mask, or a face shield can help keep you safe. It is also important after the experiments to wash your hands with soap and water and disinfect surfaces that may have been in contact with the bacteria. At the end of your experiment, fully sterilize everything before disposal.

4. Understanding the Control of Biological Clocks

Next up in the human biology project ideas is understanding how biological clocks work. Sleep is managed by two main processes: the circadian clock, which aligns sleep patterns with the day-night cycle, and sleep homeostasis, which tracks sleep debt as a way to recover from sleep loss. 

You've probably heard about the circadian rhythm, our body's internal clock. Circadian sleep regulation is crucial for animals to predict when they should be awake or sleepy each day. These processes can be controlled at different levels, such as genes, proteins, and neurons in the clock. 

This biology research topic can focus on exploring the regulation of circadian clocks at various genetic levels. This project will help you develop important scientific skills in two areas: the first one is learning how to read and summarize information from scientific articles efficiently,  and the second is finding effective ways to present the gathered information. ‍

5. Exploring the Science of Getting Older

Exploring the science of getting older is one of the most groundbreaking human biology research topics. Growing older is the main factor that increases the risk of various diseases like cancer, neurodegenerative conditions, and sensory impairments. Recently, researchers began to unravel the mysteries of ageing and discover ways to slow down or potentially reverse its effects.

What are the signs of ageing? How do scientists study the process of getting older? How do human lifespan and ageing compare to other animals? Can we actually put a halt to or undo the impacts of ageing? What progress has been made in this area? You can delve into these topics for biology projects or brainstorm other inquiries about the biology of ageing.

Animals, Plants, and Nature Project Ideas

Next up, we’ll discuss the biology research projects related to animals, plants, and nature. These environments are very close to human and they are definitely very interesting to explore.

1. Examining the Impact of Genetically Modified Mosquitoes on Disease Rates

In some areas, like the island of Príncipe, many genetically modified mosquitoes are set free every week. These mosquitoes are modified so they can't easily spread diseases like dengue fever, Zika, and malaria. They're released into nature to mix with regular mosquitoes that carry diseases. But only some agree on whether this is a good idea, as there could be unexpected environmental effects. 

You can conduct research on what could be the good and not-so-good things about this. This biology project is about researching articles and videos to understand how and why scientists use these mosquitoes to reduce diseases and to understand exactly how this works. You may even want to explore exactly how scientists create these genetically modified mosquitoes. 

‍ 2. Effectiveness of Ocean-Protected Zones

Ocean-protected zones, known as Marine Protected Areas (MPAs), are specific parts of the sea or coastal waters set aside to conserve marine resources sustainably. Governments, NGOs, or other groups create these areas, and they can vary from entirely off-limits "no-take" zones to zones with controlled fishing or other activities. While MPAs can help manage resources wisely and safeguard biodiversity, there are various reasons why they might need to be revised.

For your marine biology project ideas, investigate the factors that could make MPAs less effective. Then, devise an alternative plan for creating, modeling, and implementing an efficient Marine Protected Area.

For an insightful example of student-led research in this area, explore this project on Applications of Australian Native Aquatic Plants in Purifying Wastewater Sources at Indigo Research . ‍

biology research project

3. Learning from Nature: Can Animals Provide Solutions?

Exploring the wisdom of the natural world, you can delve into the intriguing question: Can animals offer us innovative solutions to complex problems? How can studying how lizards and newts regrow their limbs help us make wound treatments better or even help someone who is paralyzed from injury to their spinal cord? Why is tilapia skin useful for burns? Explore these new topics in biology on how animals contribute to shaping modern medicine and its future possibilities. 

Also, consider if there are any ethical worries tied to these discoveries and developments. If there are, what are they, and should we be concerned?  ‍

4. Understanding the Impact of Climate Change on the Habitats of Rare Species

Climate change, marked by factors like global warming and prolonged drought, threatens some of the rarest plants and animals on our planet. It is crucial to figure out how the future living spaces for these rare species might change so we can focus our efforts on preserving specific areas. 

In this project, you can choose a rare species you're interested in and gather online data about where it currently exists. This is a great idea for a biology research project if you’re interested in the environment, ecology or rare plant and animal species, in which you can find out how to use species distribution modeling to map where it lives now and where it might thrive. 

5. Complex Relationships in Coral Reefs

Coral reefs worldwide are struggling, and one big reason is "coral bleaching," making the reefs look white, as you might have seen in the news. Coral bleaching happens when the teamwork between the coral animals and the tiny, helpful algae inside them breaks down. These coral and algae buddies can handle different temperatures, but we don't really know why. 

This biological project can be about reading what scientists have researched about this teamwork and determining what factors can tell us when corals might turn white and how well they can handle temperature changes.

Genetic Project Ideas

If you want to base your project on genetics, we have a few ideas you can look at. 

Genetics projects ideas for high school students

1. Understanding the Relationship between Genetics and Height 

Epigenetics studies how heritable cellular phenotype or gene expression changes occur without altering the DNA sequence. Such changes are affected by lifestyle and diet. In these biochemical projects, you can analyze the open dataset on identical (or monozygotic) twins to find what biological features are shared between monozygotic twins and which are not. The latter might be affected by non-genetic factors that control these features

You will learn how to use the R tool to look at and analyze data, and use statistical tools to identify significant differences between groups, and, in the end, showcase your research with graphics to communicate it effectively to the audience. 

2. Exploring personalized medication

Just like fingerprints, each of us has a unique genetic code that determines things in our body, like our hair color, height, and eye color. Even diseases like cancer have their own unique codes inside the malignant cells that define important features of the  a tumor. 

For decades, everyone with a specific cancer has been treated the same way with surgery, chemo- or radiotherapy, even if their malignant cells are different. That's where one of the most interesting biology topics for research, personalized medication, comes in. 

It's a new and exciting way to treat diseases. Personalized medicine aims to use the disease's genetic code to customize the treatment to that particular individual. This domain of biology has a lot of published research and a lot of room for new research as well. 

One thing you can do for your biology project subject is to pick one disease whose treatment can really benefit from personalized medication and write a research paper on it based on the work of reputable researchers. 

3. The genetics of neurodevelopmental disorders

Many neurodevelopmental or psychiatric disorders like autism spectrum disorder or schizophrenia have a strong genetic basis. What genes are involved? What proteins do they produce and what are their functions? How do these genetic changes affect brain development and function? Can this knowledge help scientists develop new drugs to treat conditions like schizophrenia that is still being treated with the same drugs as 50 years ago?

This project will allow you to read exciting research that has been published over the last few years, and learn about genetics and neuroscience, two of the most exciting areas of biology and medicine. You will develop skills in scientific research and ways to present complex ideas to an audience. 

Projects based on exciting biological topics allow students to explore the science of living things and get hands-on experience with everything they learned in high school. From investigating altitude's impact on cognition in human beings to exploring genetically engineered mosquitoes, these projects help in understanding biology. 

Students develop critical thinking and research skills in each biology project, apply classroom knowledge, and communicate findings effectively. These projects provide students the freedom to explore individual interests and pave the way for future scientific endeavors. 

If you're interested in conducting biology research, consider finding a mentor who can guide you through your innovative biology project ideas. At Indigo Research, you can start your research at any time of the year, building on the knowledge and skills you've acquired from your internships or academic coursework.

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Biology Wise

Biology Wise

50 Really Good Topics for Research in the Field of Biology

Biological research has advanced in leaps and bounds, in the past few decades. With the completion of the Human Genome project in April 2003, new tools and techniques have been developed, and are being utilized to study various aspects of biology.

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50 Good Topics for Research in the Field of Biology

Never-ending recitation

If one were to continuously read aloud the letter of each base of the 3 billion bases that make up the human genome, without taking any breaks at all, the recitation would last for a period of 57 years!

The advancement in research has granted humans an understanding of how living organisms function and the purpose of their function: how they interact with the environment, the type of inter-species interactions that they have, and the impact such interactions have on the rest of the planet. These explanations have given rise to further questions based on the origin and evolution of all biological species, which eventually leads to queries regarding the exact processes occurring within an organism that determine all aspects of its existence, including the impact it has on its environment.

At present, the rising progress in science, medicine, and technology has made positive as well as negative impacts on the planet, as a whole. Current scientific research hopes to resolve these negative impacts with biological solutions, while at the same time demystifying and resolving queries related to the biota.

Aging process

Aging or senescence is the collective process through which an organism undergoes multiple physiological changes over the course of its lifetime. It includes the development of an organism’s cognitive functions till it reaches maturity, and then a steady decline of those same functions till the organism’s eventual death. Such a decline affects other body processes, leading to their impaired functioning.

In humans, aging brings with it, body frailty, organ weakness, and mental decline. Research has shown that humans are born with a biological clock that regulates this process of aging. This clock functions by the combination of a steady loss of hexamer telomeric repeat sequences of chromosomes during replicative processes and the accumulation of DNA damage and cellular wastes in an organism during the course of its life.

Scientists have researched model organisms such as C. Elegans, and observed reduced senescence in the event of selective mutations in specific genes. However the same result is yet to be reproduced in higher and more complex organisms, hence the elucidation of the exact process remains a mystery. As more studies are carried out, more theories are put forth to help explain the occurrence of this process, along with ways to prevent and reverse it.

Relevant Research Topics

  • Selective telomerase activation to delay senescence
  • Inhibition of mTOR gene and gene products for longevity of life
  • Effects of diet (caloric restriction) on lifespan
  • Effect of altered energy generation capacity (epigenetic changes) on the process of aging
  • Effect of reduced mRNA translation on senescence

Agriculture

Tractor in farm

The ever-growing human population along with the recent population explosion has caused a dramatic increase in the demand for food crops. This coupled with the occurrence of natural disasters like earthquakes, floods, etc., and pest problems, result in huge losses of food grains. Such a shortage increases the world’s hunger problem, where most of the inhabiting people of developing nations are unable to feed themselves everyday.

To solve such a mammoth crisis, and to avert death of people on account of starvation, the yield of food has to be increased manifold. One way to do this, can be by upgrading the agricultural practices of farmers; by giving them advanced know-how, better tools and implements, and to have precautions in place to protect the farmed yield from instances of natural disasters and pest populations.

Another way to overcome this problem, is to research and produce newer varieties of these food crops that are resistant and even repellent towards pest populations, while at the same time produce a very high yield with minimum care. Varieties of crops which produce food in more than one season, can also be produced.

  • Development of GMO food crops
  • Development of high-yield varieties of wheat and corn
  • Imparting viral, fungal, and bacterial resistance to crop plants,
  • Study of salt and water stress on plants
  • Inducing production of pest-repellent natural biochemicals (e.g. nimbidin from neem tree) in normal food crops

Antibiotic Resistance

Medicines on hand

With the advent of vaccines, anti-microbial, and anti-viral agents, numerous diseases have been eradicated, averted and contained. Infections that would have proven fatal a few decades ago are now taken care of by a mere injection, tablet, or a capsule, helping in increasing the overall health of the human population.

But with the excessive use of antimicrobial solutions, nature serves us a reminder of continuous evolution in the form of antibiotic resistant strains of micro-organisms. As the strength and efficiency of these antibiotics evolves due to medical research, the infectious organisms too evolve and adapt to overcome these substances. An infection caused by such an organism is not only untreatable, but also proves to be fatal.

To curb this evolution of “super-bugs”, newer mechanisms and pathways have to be researched to prevent infections by these organisms. Also, targeted drugs have to be developed that halt the organism’s internal processes, thereby rendering it unable to infect.

  • Mechanism of pathogenesis of antibiotic resistant agent
  • Drug designing of molecules that hamper pathogenicity
  • Development of a biomolecule that induces programmed cell death by caspase activation in resistant organism
  • Development of new target models to produce more effective antibiotics
  • Studying effects of probiotics in infection prevention

Bioremediation

Technology has brought the world closer and improved the quality of life considerably. Actions that took extended periods of time, can now be carried out easily and within a short time. There is year round availability of goods in all parts of the world.

But such industrial advancement comes with its fair share of adverse consequences. The petroleum industry which provides fuel for so many purposes, has accidents which cause oil spills in oceans. These affect the natural fauna and flora of the marine ecosystem. The smoke emissions from vehicles and industries cause air pollution, which in turn affects the health of animals and humans equally. The effluents from the factories pollute water bodies, that eventually affect anything and anyone that utilizes the water.

These instances are not only hampering the health of organisms but also affecting the physical world in the form of climate change, global warming, and ozone depletion. Scientists are now working on natural biological ways to rid the environment of such harmful pollutions, and are also devising ways in which the pollution is altered and reduced at their very source.

  • Development of GMO microbes that break down oil
  • Development of eco-friendly fuel alternatives (bio-diesel)
  • Practical use of bioluminescence in place of electricity
  • Bio-films that absorb air pollution
  • Studying plants (water hyacinth) and microbes that can absorb heavy and toxic elements from effluents of industries

Cancer Metastasis

Cancer cells metastases

Cancer is one of the major health concerns in humans. It is the condition of uncontrolled and abnormal division of body cells. These cells have the potential to spread to other parts of the body, and spread the cancer. Cancer is characterized by the formation of a cell mass called the tumor. There are two types of tumors – benign and metastatic. The benign tumor is just a compact overgrowth of cells that can be easily removed by surgery. However, if the cells turn metastatic, that is they gain the ability to migrate to other parts of the body via the blood stream, the tumor is said to be malignant.

Maximum cases of death due to cancer are due to recurrences of the tumor. Tumors once removed, recur due to the metastatic nature of the cells. If the metastasis is prevented or averted, the chances of the tumor recurring are drastically reduced.

Not only is this condition without a cure, but the mechanisms by which it occurs is also not known in detail. Research has to be carried out to determine the mechanism by which it occurs, and only then could a way be worked out to prevent and eventually cure this condition.

  • Studying mechanism of cancer metastasis
  • Rescuing function of tumor suppressor genes in cancerous state
  • Developing methods and tools to identify and eliminate cancer cells without hampering healthy cells
  • Targeted drug therapy to cancer sites
  • Gene therapy to hamper the cancerous cell’s metastatic pathway

Developmental Biology

Human embryo development

All organisms develop from a single-celled zygote, and animals within the same order and family of classification resemble each other during the initial stages of embryonic development. The field of developmental biology deals with the study of how complex multicellular organisms develop and emerge from what is essentially a ball-like mass of cells (morula).

It consists of studying the various processes that give rise to our characteristic physical appearance, body plan and structures, and the regulatory processes of the body. Any defect or malfunction during the embryogenesis process causes a structural and functional defect in the individual organism. In some cases the defect is too large to overcome, and proves fatal to the organism, leading to the death of that developing embryo.

Developmental defects cause a variety of health disorders such as spina bifida, microcephaly, schistocystis, etc. Researching the causes of these conditions may offer an insight into their management and possible cure.

  • Epigenetic basis of embryogenic development
  • Specific cell fate and cell mapping of gastrula cells in development of higher animal fetuses
  • Genetic basis of cleft palate
  • Gestational environment that leads to developmental defects
  • Effect of maternal health and diet on developing embryo

Genetic Disorders

DNA system

Genetic research has opened up a new approach towards the cause of multiple disorders. A majority of birth defects, syndromes, and disorders are due to gene defects. This understanding has allowed researchers to investigate the genetic basis of diseases and disorders.

Any disorder that occurs, is mainly due to a mutation or defect in the gene sequence. This disruption causes a change in the protein encoded by that gene. The altered protein leads to a malfunction or prevents the occurrence of a process eventually, thereby giving rise to the disorder.

A few such disorders include Downs syndrome, Huntington’s disease, Marfan syndrome, Alzheimer’s, Lesch-Nyhan syndrome, and Cystic Fibrosis. Studying the mechanisms of these diseases will help elucidate the path along which the disease progresses, and the role of the genes involved.

  • Cystic fibrosis (CFTR gene)
  • Huntington’s disease (HTT gene)
  • Lesch-Nyhan syndrome (HPRT1 gene)
  • Wilson’s disease (ATP7B gene)
  • Down syndrome (trisomy of 21st chromosome)

Infertility

Depressed couple

The sedentary lifestyle of people, coupled with the pollution in the environment, and stress, are causes of a number of health concerns, one of the major concerns being infertility. More and more people are unable to procreate, and have been diagnosed to be infertile. While adoption is a viable option, the people diagnosed with infertility still prefer having a child of their own. A major reason behind this logic being the social stigma attached to the concepts of infertility and adoption.

Infertility, to a certain extent, can be reversed by a change in the lifestyle of the affected individual. But in some cases, the reason might be structural or genetic. The karyotyping or a body exam of the individual may yield the reason behind the infertility or the reason may be genetic.

  • Effect of Robertsonian translocations on infertility
  • Effect of Ring chromosomes on infertility and miscarriages
  • Age-related factors affecting infertility
  • Development of refined In Vitro Fertilization (IVF) and Post Implantation Genetic Diagnosis (PIGD) techniques
  • Hormonal basis of miscarriages

Neurobiology

Male head and brain

The most mysterious and elusive of organs, the brain, is the most vital organ of the body. It not only controls all the processes of the body, but also the thoughts, instincts, and actions of the individual. It is responsible for the personality and the behavior of every individual. Despite this, the brain is yet to be fully mapped out and elucidated.

Within the gyri and sulci of the brain, neurons pass electrochemical impulses that allow the brain to comprehend and react to the surroundings. While the basic functions of neurons are studied and known, still mystifying are the concepts of intelligence, memory, perception, psychology, behavior, and thoughts. Also, the concept of soul and whether it exists or not, remains unresolved.

  • Comprehensive brain mapping
  • Brain activity during epileptic seizures
  • Basis for substance addiction
  • Brain processes involved in memory, intelligence, and formation of thoughts
  • Twin studies of monozygotic twins developing different personalities and behavior traits

Structural Biology

Molecular bonds

The field of structural biology is studied to determine the 3d structures of biological macromolecules, how they interact with other molecules, and how alterations in their sequences lead to structural changes. It is studied by making use of a number of software tools that are programmed to predict various structural aspects based on the protein sequence provided to it.

The protein sequence is provided by means of in vitro lab assays specifically designed for that purpose. The software predictions are based on the results of techniques such as mass spectroscopy, X-ray diffraction, nuclear magnetic resonance, etc,. Research in this field can be used to know how mutations affect the 3d structure of the molecule it codes for. It can also be used to study the interactions between proteins, or between ligand and receptor molecules.

  • In silico study of biological macromolecules
  • Prediction of protein structure based on altered sequence
  • Protein-protein interaction related to immune response
  • In silico drug designing against virulent protein
  • Studying protein structure and interactions in case of an unknown pathogen

Research on any of these topics will revolutionize the understanding of biological processes, and help humans in improving their quality of life without having an adverse effect on the environment. A number of universities and research foundations are dedicated towards finding the answers to the issues mentioned here.

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Top 100 biology research topics for high school and college.

biology research topics

Writing a biology essay may not sound like a very difficult thing to do. In fact, most students really like this subject. The problem is not that you can’t write a good paper on a topic in biology. The problem is with finding excellent biology research topics. Now, you may be wondering why you would want to invest so much time into finding great biology research paper topics. After all, what you write in the essay matters more than the topic, right? Wrong! We are here to tell you that professors really appreciate interesting and unique topics.

And it makes a lot of sense, if you think about it. If you simply pick one of the most popular biology research topics, you will never be able to pique the interest of your teacher. He has read dozens, if not hundreds, or papers on that exact same topic. What you want to do is come up with interesting biology research topics. You want to find topics that none of your classmates are thinking of writing an academic paper about. You will shortly see why this is important. And we will also give you 100 biology topics for research projects that you can use for free – right now!

Biology Research Paper Topics Really Are Important!

It doesn’t matter what area of biology you need to write about. This information applies to everything from zoology and botany to anatomy. The reality is that your professor will really appreciate good topics. And you can rest assured that he or she knows how to spot them. The moment the professor starts to read your paper, he or she will immediately realize that you really did your best to find an excellent topic. And if you write a good introduction paragraph (which contains a captivating thesis statement as well), you are in the best position to earn bonus points.

You may not be aware of it, but teachers are willing to treat great papers with more leniency. This means that you will not get penalized for minor mistakes if you come up with a great topic. In other words, you will get a better grade on your papers if you manage to come up with good research topics for biology. This is a fact and it is based on thousands of pieces of feedback from our readers.

How Do You Choose Good Biology Research Topics?

Choosing research topics for biology can be a daunting task. Frankly, the research paper topics biology students are looking for are not easy to come by. The first thing you want to avoid is going to the first website that pops up in Google and getting your ideas from there. Most of your peers will do the same. Also, avoid topics that are extremely simple. You will simply not have enough ideas to write about. Of course, you should avoid overly complex topics because finding information about them may be extremely difficult.

The best way to find a good topic, in our opinion, is to get in touch with an academic writing company. You will get access to a professional writer who knows exactly what professors are looking for. A writer will quickly give you an amazing research topic in biology.

Eloquent Examples of Popular Biology Research Topics

To make things as simple as possible for you, we’ve put together a list of biology research project ideas. You will find 100 topics on various subjects below. Of course, you can use any of our topics for free. However, keep in mind that even though we are doing our best to maintain this list fresh, other students will find it as well. If you need new topics for your next biology essay, we recommend you to get in touch with us. We monitor our email address, so we can help you right away. Also, you can buy a research paper from our service.

Biology Research Topics for High School

Are you looking for biology research topics for high school? These are relatively simple when compared to college-level topics. Here are a couple of topic ideas that high school students will surely appreciate:

  • Identifying Three Dead Branches of Evolution.
  • What Is Sleep?
  • How Does Physical Exercise Affect the Metabolism?
  • A Behavioral Study of Birds.
  • How Does Music Affect Your Brain?
  • Climate Change and Biodiversity.
  • Are Bees Really Becoming Extinct?
  • Rainforest Extinction Is Dangerous.
  • The Benefits of Organic Farming.
  • Can the Brain Repair Itself?
  • The Effect of Bacteria on Depression.
  • How Do Sea Animals Camouflage?

Research Topics in Biology for Undergraduates

Research topics in biology for undergraduates are more complex than high school or college topics. Our researchers did their best to find topics that are relatively complex. However, each one of the following topics has plenty of information about it online:

  • What Is the Mechanism of Metastasis in Cancer Patients?
  • How Do Tumor Suppressor Genes Appear?
  • How Can We Destroy Cancer Cells Without Damaging Other Cells?
  • The Benefits of Gene Therapy.
  • Analyzing the Huntington’s Disease (the HTT Gene).
  • How Does the down Syndrome (Trisomy of 21st Chromosome) Appear?
  • Analyzing the Brain Activity During an Epileptic Seizure.
  • How Are Our Memories Formed and Preserved?
  • The Effect of Probiotics on Infections.
  • Analyzing Primate Language.
  • Analyzing Primate Cognitive Functions.
  • The Link Between Darwin’s Theory and Biology.

Biology Research Topics for College Students

Biology research topics for college students are of moderate difficulty. They are easier than undergrad topics and more complex than high school topics. While compiling this list, we made sure you have more than enough information online to write the paper quickly:

  • Using DNA Technology in the Field of Medical Genetics.
  • The Effect of Drinking on Embryonic Development.
  • How Are Genes Mapped and Cloned?
  • Explain What Genetic Polymorphism Is.
  • What Is a Hereditary Disease?
  • The Effect of Drugs on Embryonic Development.
  • Describing Oligogenic Diseases (like Hirschsprung Disease)
  • What Is the Mendelian Inheritance?
  • How Transcriptomics and Proteomics Changed Modern Medicine.
  • The Risk Factors of Infertility Explained.
  • How Does Aging Effect Infertility?
  • What Do Ash Elements Do in a Plant?
  • Explaining the Pigments in a Plant Cell.
  • How Is Photosynthesis Done?
  • The Role of Fats in Plant Cells.
  • The Effect of Smoking on Embryonic Development.

Cell Biology Research Topics

Some of the best biology topics are cell biology research topics. The scientific community is constantly making progress in this area, so there is always something new to write about. Here are some of the best examples:

  • What Is Regenerative Medicine?
  • A Closer Look at Tissue Engineering.
  • Discuss the Future of Regenerative Medicine.
  • Analyzing Therapeutic Cloning.
  • The Pros and Cons of Creating Artificial Organs.
  • How Do Cell Age?
  • Can We Reverse Cell Aging?
  • Advances in Cell Therapy.
  • What Is Cell Adhesion?
  • Explaining Cell Division.
  • What Is Cellular Metabolism?
  • Describe Active and Passive Transport in Cells.
  • What Are Cell Plastids?

Evolutionary Biology Research Paper Topics

If you want something more complex, you can try your hand at writing on evolutionary biology research paper topics. As with all our topics, you will be able to find a lot of ideas and information online. Here are our picks:

  • Where Did Plants Come From? (The Evolutionary Theory)
  • Explaining the Host-parasite Coevolution.
  • How Did Parasites Evolve over Time?
  • What Is Natural Selection and How Does It Work?
  • Explain Sexual Selection.
  • Explain Sexual Conflict.
  • How Did Our Immune Systems Evolve?
  • How Do New Species Appear in the Wild?
  • The Evolution of Cell Respiration.
  • What Is the Hippo Pathway? (Developmental Biology)

Various Topics

Antibiotics resistance, agriculture and cloning are hot subjects nowadays. Your professor will surely be interested to learn more about biology research topics. Here is a mix of topic ideas from our established community of academic writers:

  • The Problem of Using Antibiotics on Large Scale.
  • Examining the Effects of Salt on Plants.
  • What Is DNA Technology?
  • The Effects of GMOs on the Human Body.
  • How Is the Quality of Antibiotics Controlled?
  • How Are GMO Food Crops Created?
  • The Effect of Veterinary Antibiotics on Humans.
  • The Allergic Reactions to Specific Antibiotics.
  • A Look at How Penicillin Works in the Human Body.
  • How Are Antibiotics Obtained?
  • What Are Natural Biochemicals with Pest-repellent Properties?
  • The 3 Most Toxic Effects of Antibiotics
  • How the Human Body Develops Resistance to Antibiotics.
  • The Impact of Biology on the Us Agriculture.
  • What Is the Green Revolution?
  • Analyzing the Minerals in the Plant Cell.
  • Analyzing Muscle Development and Regeneration
  • The Uses of Cancer Stem Cells.

Marine Biology Research Topics

There is a lot of talk about global warming, about microplastics in our oceans, and about endangered marine species. This means that marine biology research topics are a very hot topic today. Here are some of our best ideas:

  • Can GMO Organisms Break down Oil after Maritime Accidents?
  • Pollution-absorbing Bio-films.
  • Microbes That Can Absorb Toxic Compounds in the Water.
  • Can We Really Use Bioluminescence?
  • How Is Bio-diesel Created?
  • Analyzing the Coral Reef Biology.
  • Why Is the Lobster Population Dwindling?
  • The Effect of Mass Fishing on the World’s Oceans.
  • Global Warming and Its Effect on Marine Microorganisms.

Molecular Biology Research Topics

Writing about molecular biology research topics is not easy. However, it’s a foolproof way to get a top grade. Your professor will really appreciate your willingness to write an essay about a complex topic. Just make sure you know what you are talking about. Below you can find some of the best topics:

  • How Is Insulin Produced?
  • How Is the Growth Hormone Produced?
  • Analyzing the Repropagation of Translation.
  • What Is DNA-telomerase?
  • The Process of Sequencing Nucleotides in DNA.
  • What Is Telomerase?
  • The Link Between Telomerase and Cancer.
  • The Link Between Telomerase and Aging.
  • How Does DNA Forensics Work?
  • Describe the Process of Protein Metabolism.

There is no such thing as easy biology research topics. When the topic is too simple, you end up getting penalized. You can’t write 500 words about it without straying away from the subject. Also, no matter how interesting the topic may be, you should make sure that the essay is written perfectly. This means that not even interesting biology research topics can save you from a bad grade if you fail to follow all applicable academic writing standards.

Find it hard to cope with your college paper? Great news! Use promo “ mypaper20 ” and enjoy 20% discount on a biology writing assignment from our profs!

physics topics

Research projects in the Department of Biology

Explore Department of Biology research opportunities for undergraduates below and/or review the mentor’s research through the faculty profile pages. Students are welcome to independently pursue research opportunities outside of the Department of Biology, including opportunities with other University departments or programs, as well as outside of the University with an off-campus research group or other institutions. Current professors, graduate teaching assistants and other undergraduates already involved in research would be a great resource for finding a project.

Aerial shot of Castle Lake with snow covered Mount Shasta in the distance.

Sudeep Chandra

The Aquatic Ecosystems Analysis Laboratory (AEAL) is a broadly based freshwater research lab with projects on local, regional and global waterways. Particular research projects involve understanding the effects of climate on freshwater ecosystems and the organisms that live within them.

Orange and black fuzzy caterpillar on a leaf.

Work in the chemical ecology and tropical diversity laboratory focuses on direct and indirect trophic interactions in complex biotic communities with emphases on global change. The research includes field and laboratory work, as well as research with specimens in the Museum of Natural History at the University of Nevada, Reno.

Photo of a lizard sitting on top of a woman's hand outdoors.

Chris Feldman

The Feldman lab is interested in a broad array of evolutionary, ecological, and conservation topics, primarily in reptiles and amphibians, ranging from simple questions of diet differences between sympatric lizards, to patterns of molecular evolution in specific snake proteins.

Close up photo of an orange spotted butterfly perched on a green leaf.

Matt Forister

The Forister lab works in the areas of specialization, diversification, and plant-insect ecology.

Close up photograph of a mouse.

Jennifer Hoy

The Hoy lab seeks to identify the neural circuit basis of prey-capture behavior in the mouse as part of the broader goal to understand how vision guides action in the mammalian brain. 

Microscope image of axons.

The Kidd lab is use fruit fly genetics to study how axons navigate long distances to their targets during the development of the nervous system.

Colorful scan of neurons

By combining powerful Drosophila genetics with cellular, physiological, and behavioral analyses, the Kim lab tries to understand the molecular and cellular mechanisms underlying neurological and mental disorders.

Bumblebee on a purple flower

Anne Leonard

The Leonard Lab focuses on the evolutionary ecology of communication in plant-pollinator and sexual selection contexts. Using primarily bees, questions explore signal complexity (is it color or scent that will be most attractive to a forager), nutritional ecology (which flower will have the better meal) and the actual mechanics of pollination.

A green gecko hangs out on a branch in a zoomed in photo of the gecko.

We are ecologists, evolutionary biologists, and physiologists. We use laboratory and field experiments to study the responses of organisms to rapid environmental change.

Cropped diagram of olfactory impacts on behavior.

Dennis Mathew

The Mathew lab is working to understand how a circuit of neurons translates olfactory input into behavioral output? Thus, laying the foundation for understanding how information is processed by neurons to result in a behavior. 

Tree swallow perched on a twig.

Jenny Ouyang

The Ouyang lab uses natural and laboratory experiments to test how, and at what rate, hormonally regulated traits enable organismal adaptation to changing environments.

Microscopic image of neurons, colored green yellow and orange.

Simon Pieraut

The goal of our research is to decipher the molecular and cellular mechanisms underlying inhibitory neural plasticity. For complete information please visit the lab website.

Chickadee perched on snowy pine tree branch.

Vladimir Pravosudov

Research in my lab broadly focuses on Animal Behavior and Behavioral Ecology with special emphasis on animal cognition.

Photo of a black and white monkey sitting in a tropical tree.

Elizabeth Pringle

The Pringle lab focuses on the evolutionary ecology of multispecies mutualisms. 

Tropical caterpillar on a green leaf stem.

Lora Richards

Our lab focuses on a wide range of chemically mediated ecological interactions.  We are particularly interested in the role of plant chemistry in structuring diverse ecological communities.

Bright green caterpillar on a leaf.

Angela Smilanich

The Smilanich lab focuses on the ecology and evolution of diet breadth via physiological studies of multitrophic interactions between plants, herbivores, and natural enemies.

Image of a population of Caenorhabditis elegans taken through a stereomicroscope.

Alexander van der Linden

Our research uses the model organism Caenorhabditis elegans coupled to genetic, molecular and genomic tools to understand how animals sense and translate environmental and internal signals to influence behavior, metabolism, sleep and aging. 

Black and yellow striped frog.

Jamie Voyles

The Voyles Lab takes a “One Health” perspective, recognizing that human, plant, animal and ecosystem health are inextricably connected. Our research is focused on amphibian chytridiomycosis and white-nose syndrome in bats. Both are diseases that have emerged recently and are causing dramatic declines in North America and around the world.

The Australian National University

  • Programs and Courses

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Biology Research Project

An undergraduate course offered by the Biology Teaching and Learning Centre .

  • Code BIOL3208
  • Unit Value 6 units
  • Offered by Biology Teaching and Learning Centre
  • ANU College ANU Joint Colleges of Science
  • Course subject Biology
  • Areas of interest Biology
  • Work Integrated Learning Fieldwork
  • Academic career UGRD
  • Prof Spencer Whitney
  • Mode of delivery In Person
  • Offered in Summer Session 2024 First Semester 2024 Autumn Session 2024 Winter Session 2024 Second Semester 2024 Spring Session 2024 See Future Offerings
  • STEM Course

biology research project

  • Introduction

Learning Outcomes

Work integrated learning, indicative assessment, inherent requirements, requisite and incompatibility, prescribed texts, other information, specialisations.

  • Offerings and Dates

This course is specially tailored for students attracted to, or wondering about research. Students are immersed in a real research environment and in the practice of research. They are integrated in a research team and get direct experience in core components of research activities, from posing a question, defining hypotheses to address it, and the appropriate approaches to examine these hypotheses; data analysis and rigorous presentation, interpretation of results, and most importantly their critical assessment and discussion in the context of the current body of knowledge. Students are experiencing first-hand the joys and tribulations of probing the unknown, the drive, curiosity, discipline, and perseverance this requires.

This course is designed to be flexible and allows for a broad range of research areas and environments to be experienced by students. Interested students are encouraged to contact the convener and prospective supervisors in Biology. Many research areas are available, please see: Themes | ANU Research School of Biology

It is also possible to be hosted at the Genetic Counselling Unit of The Canberra Hospital for a Genetic Counselling Internship. This option is aimed at those with a special interest in the field of human genetics, specifically in the area of genetic counselling. Students who wish to be considered for this internship should have completed  BIOL3204  Human Genetics, or other relevant human genetics courses and the eligibility criterion of at least a 70% average across science courses during previous semesters. Please contact [email protected] for more information about Genetic Counselling Internship option.

NOTE: This course is an Honours Pathway Course that involves research oriented material of a greater conceptual difficulty than a typical 3000 level science course.

Upon successful completion, students will have the knowledge and skills to:

  • Plan and engage in an independent and sustained critical investigation and evaluation of a chosen research topic supervised by an academic
  • Systematically identify relevant theory and concepts, apply them appropriately, and draw appropriate conclusions
  • Engage in critical review of appropriate and relevant information sources
  • Understand and apply relevant research techniques and methods
  • Record original data and apply statistical or other evaluation processes to original data when appropriate
  • Communicate concepts and results clearly and effectively both in writing and orally

Enrolment in this course is dependent upon the availability of a suitable supervisor and must be approved by the course convener.

An average of 70% or above in relevant BIOL courses will be required to enrol in this course. Please fill in the application form and submit the completed form electronically via the permission to enrol portal

  • Written report, in a scientific paper format (70) [LO 1,2,3,4,5,6]
  • Seminar (15) [LO 1,2,3,4,5,6]
  • Notebook/Lab book (10) [LO 1,2,3,4,5,6]
  • Blog entry (5) [LO 1,2,3,4,5,6]

The ANU uses Turnitin to enhance student citation and referencing techniques, and to assess assignment submissions as a component of the University's approach to managing Academic Integrity. While the use of Turnitin is not mandatory, the ANU highly recommends Turnitin is used by both teaching staff and students. For additional information regarding Turnitin please visit the ANU Online website.

The expected workload will consist of approximately 130 hours throughout the semester including:

  • The project is expected to involve 65 hours of laboratory or fieldwork throughout the semester.
  • Approximately 85 hours of individual work which will include preparation individual work, including preparation of a report (up to 9000 words), presentations and other assessment tasks.

Students are expected to actively participate and contribute towards discussions.

To be determined

You will need to contact the Biology Teaching and Learning Centre to request a permission code to enrol in this course.

  • Plant Science

Tuition fees are for the academic year indicated at the top of the page.  

Commonwealth Support (CSP) Students If you have been offered a Commonwealth supported place, your fees are set by the Australian Government for each course. At ANU 1 EFTSL is 48 units (normally 8 x 6-unit courses). More information about your student contribution amount for each course at Fees . 

If you are a domestic graduate coursework student with a Domestic Tuition Fee (DTF) place  or international student you will be required to pay course tuition fees (see below). Course tuition fees are indexed annually. Further information for domestic and international students about tuition and other fees can be found at  Fees .

Where there is a unit range displayed for this course, not all unit options below may be available.

Units EFTSL
6.00 0.12500

Course fees

Year Fee
2024 $4440
Year Fee
2024 $6360

Offerings, Dates and Class Summary Links

ANU utilises MyTimetable to enable students to view the timetable for their enrolled courses, browse, then self-allocate to small teaching activities / tutorials so they can better plan their time. Find out more on the Timetable webpage .

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1226 01 Jan 2024 19 Jan 2024 19 Jan 2024 31 Mar 2024 In Person N/A

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2782 19 Feb 2024 26 Feb 2024 05 Apr 2024 24 May 2024 In Person N/A

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5227 01 Apr 2024 19 Apr 2024 19 Apr 2024 30 Jun 2024 In Person N/A

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Your chance of acceptance, your chancing factors, extracurriculars, interesting biology research topics.

Hello fellow students! I'm working on a biology research project for my school's science fair and I want to explore an interesting topic. Do you have any suggestions for unique biology research topics or ideas that could make my project stand out in the college admissions process?

Hello! It's always exciting to dive into a fascinating biology research topic for a science fair. To help make your project stand out in the college admissions process, I'd recommend choosing a topic that demonstrates your passion and curiosity for biology while addressing a current problem or emerging field. Here are a few ideas to spark your creativity:

1. CRISPR & Gene Editing: Investigate the potential applications and ethical implications of CRISPR technology. You could focus on its use in curing genetic diseases or the controversy surrounding "designer babies."

2. Microbiome Research: Examine the role of gut bacteria in human health and disease, exploring how changes in the microbiome impact our immune system, metabolism, or mental health.

3. Bioluminescence: Research the various applications of bioluminescence, such as using glowing bacteria to detect environmental pollutants or creating bio-luminescent plants as an alternative to electric lighting.

4. Synthetic Biology: Explore the field of synthetic biology and its potential applications in areas like biofuels, medicine, and environmental remediation.

5. Epigenetics: Investigate how epigenetic changes, influenced by factors such as diet, stress, or environmental exposures, can affect gene expression and contribute to disease development.

6. Climate Change & Ecosystems: Study the impact of climate change on ecosystems and species, such as how changes in temperature and precipitation are affecting species distribution, behavior, or adaptability.

7. Invasive Species: Research invasive species and the threats they pose to native ecosystems. You could focus on strategies for controlling their spread or the challenges of eradicating them.

8. Antibiotic Resistance: Dive into the issue of antibiotic resistance and the potential consequences for human health. Investigate alternative methods for fighting bacterial infections or strategies to reduce the development of resistance.

9. Biodegradable Plastics: Look into biodegradable plastics as an eco-friendly solution to conventional petroleum-based plastics. Explore their potential applications, as well as the challenges in producing and disposing of them.

Remember to choose a topic that truly interests you and aligns with your future goals, as it will make the research process more enjoyable and impactful. Best of luck with your science fair project!

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CollegeVine’s Q&A seeks to offer informed perspectives on commonly asked admissions questions. Every answer is refined and validated by our team of admissions experts to ensure it resonates with trusted knowledge in the field.

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15 Biology Research Opportunities for High School Students

biology research project

By Eric Eng

Biologists testing water of natural river

Biology is your go-to science, a branch of science that’s filled with endless opportunities for discovery and innovation. If you’re a high school student with a love for biology, plenty of research opportunities await to give you a taste of the professional scientific research world. These experiences offer so much more than your typical classroom lessons.

This article presents 15 biology research opportunities for high school students designed for scholars eager to explore this scientific field. These opportunities allow students to apply their learning in practical settings and prepare them for future academic and career pursuits in science.

From environmental studies and biomedical research to genetics and beyond, each program offers a unique chance to delve into specific areas of interest, guided by experts and utilizing cutting-edge technologies.

1. HiSTEP at NIH

  • Location : Bethesda, Maryland
  • Subfield : Biomedical and healthcare
  • Eligibility : High school juniors from the DMV area with a minimum 3.0 GPA
  • Important Dates : Application deadline: January 12.

The High School Scientific Training and Enrichment Program (HiSTEP) at the National Institutes of Health (NIH) is a distinguished example of biology research opportunities for high school students, especially those residing in the District of Columbia , Virginia, and Maryland metro area.

International BioGENEius Challenge

Tailored for high school juniors who demonstrate a keen interest in biomedical and healthcare careers, HiSTEP fosters the development of basic science skills and immerses participants in a rich curriculum covering a broad array of STEM-M topics.

Through workshops, lectures, and hands-on experiences on the NIH campus in Bethesda, Maryland, the program aims to broaden students’ perspectives on science and healthcare professions while promoting diversity in these fields.

Eligibility criteria ensure the program is accessible to students who meet specific academic and socioeconomic thresholds, ensuring that those who could most benefit from such an experience have the opportunity to do so.

2. George Washington Carver Internship Program

  • Location : Iowa State University, Iowa
  • Subfield : Food systems and agricultural processes
  • Eligibility : U.S. citizens and legal residents with a minimum 3.0 GPA
  • Important Dates : Application deadline: February 1.

The George Washington Carver Internship Program represents a remarkable opportunity among biology research opportunities for high school students, particularly those interested in agriculture, food systems, and environmental science.

Group of students smiling and talking to each other.

Hosted by Iowa State University, this program invites students to engage directly in the scientific research process by spending eight weeks on campus conducting research alongside experienced mentors.

Participants delve into projects that could range from studying plant genetics to exploring sustainable agricultural practices, providing them with a comprehensive overview of the challenges and innovations in the field of agricultural sciences.

The internship is designed to equip students with hands-on research experience and inspire them to consider future careers in these critical areas of study. With provisions for on-campus housing, a meal plan, round-trip airfare, and a stipend, the program breaks down barriers to participation, making it accessible to U.S. citizens and legal residents who meet the academic criteria.

3. Pacific Northwest National Laboratory Young Women in Science (YWIS)

  • Location : Pacific Northwest National Laboratory
  • Subfield : STEM
  • Eligibility : Female high school students interested in STEM
  • Important Dates : Application deadline varies.

The Pacific Northwest National Laboratory Young Women in Science (YWIS) program is a pioneering initiative designed to provide biology research opportunities for high school students, focusing specifically on empowering female students through science.

Three happy students smiling

This program, set within the prestigious environment of the Pacific Northwest National Laboratory, is tailored to foster an inclusive atmosphere where young women can explore their interests in various STEM fields, including biology, environmental science, and more.

Over ten weeks during the summer, participants can work closely with scientist mentors on real research projects, gaining invaluable hands-on experience beyond the conventional classroom setting. Alongside the research component, the YWIS program enriches its participants’ experience with various developmental activities such as laboratory demonstrations, field trips, and workshops designed to build skills, knowledge, and confidence.

This initiative aims to inspire the next generation of female scientists by exposing them to the vast possibilities within scientific inquiry. It also strives to break down gender barriers in STEM by actively encouraging young women to pursue their scientific interests.

4. Broad Summer Scholars Program

  • Location : Cambridge, Massachusetts
  • Subfield : Cancer biology, chemical biology, computational biology, infectious disease
  • Eligibility : Rising Massachusetts high school seniors with Bs in science and math
  • Important Dates : Application deadline: January 10.

The Broad Summer Scholars Program is a standout initiative among biology research opportunities for high school students, hosted by the Broad Institute in Cambridge, Massachusetts.

Group of students walking in the campus.

This program provides an immersive six-week experience that invites rising high school seniors to dive into the world of scientific research across various domains such as cancer biology, chemical biology, computational biology, and infectious disease.

Aimed at fostering a deeper understanding of biology and encouraging the pursuit of science careers, the program connects students with cutting-edge research projects, enabling them to work alongside renowned scientists and researchers.

Participants are given the unique opportunity to conduct significant research and explore potential science careers, attend informative scientific talks, and expand their network of peers with similar interests.

5. Brown Environmental Leadership Labs (BELL)

  • Location : Anchorage, AK; Mammoth, CA; Providence, RI
  • Subfield : Environmental science
  • Eligibility : High school students
  • Important Dates : Application deadline: May 10, 2024.

The Brown Environmental Leadership Labs (BELL) is a prominent fixture among biology research opportunities for high school students seeking to explore environmental science in a profoundly immersive setting.

Marine Biologists working at the beach coast

This program, hosted by Brown University , takes students through some of the most breathtaking landscapes in Anchorage, AK, Mammoth, CA, or Providence, RI. The landscapes offer a backdrop for study and a hands-on laboratory for understanding the intricacies of environmental challenges.

Participants explore issues such as climate change, sustainability practices, and the socio-political dynamics of environmental stewardship while being guided to develop their environmental action plans.

This initiative is designed to mold future environmental leaders by empowering them with the knowledge, skills, and perspective needed to advocate for and implement real-world solutions in their communities.

6. Summer Child Health Research Internship

  • Location : Boulder, Colorado
  • Subfield : Child health
  • Eligibility : Rising high school seniors, college students, and first-year medical students
  • Important Dates : Application deadline: Early February.

The Summer Child Health Research Internship offers an unparalleled opportunity among biology research opportunities for high school students with a keen interest in pediatric health and medical research.

Close up of students smiling at the camera.

This program, hosted by the University of Colorado Boulder’s Department of Pediatrics, immerses participants in biomedical research and pays a stipend, making it both an educational and financially beneficial experience.

Throughout the program, students are engaged in hands-on research projects under the mentorship of seasoned professionals, providing a real-world glimpse into the challenges and advancements in child health.

Additionally, the program encourages participants to develop their scientific communication skills by preparing a written summary of their research findings. Remarkably, students are allowed to present their work at local, regional, and national meetings, with the program offering support for travel and registration fees if their paper is accepted.

7. Center for Talented Youth (CTY) Honors Biology

  • Location : Online
  • Subfield : Biology
  • Eligibility : Academically advanced students (grade 7+)
  • Important Dates : Ongoing applications.

The Center for Talented Youth (CTY) Honors Biology course at Johns Hopkins University stands out among biology research opportunities for high school students. It offers a deep dive into complex biological concepts through an accessible online platform.

Students participating in the program through available online courses.

This program is tailored for academically advanced students starting in grade 7 eager to challenge themselves beyond the traditional classroom setting. CTY Honors Biology allows students to explore the intricate world of biology. It does so with the flexibility of online learning, making it a viable option for students regardless of their geographic location.

The course’s structure emphasizes academic rigor, promoting a thorough understanding of biological principles and their application in various scientific contexts. By focusing on engaging students with challenging content, the program aims to foster a deeper appreciation and understanding of biology among its participants.

This unique opportunity provides a comprehensive introduction to the field, encouraging students to pursue further studies and careers in biology and related disciplines. By participating in this program, students can expect to enhance their scientific knowledge and analytical skills and possibly even spark a lifelong passion for biological sciences.

8. Johns Hopkins Internship in Brain Science Program (JHIBS)

  • Location : Baltimore, MD
  • Subfield : Neurological sciences
  • Eligibility : Baltimore-area high school students
  • Important Dates : 8-week summer program.

The Johns Hopkins Internship in Brain Science Program (JHIBS) is an engaging and impactful initiative among the biology research opportunities for high school students, particularly those in the Baltimore area interested in neurological sciences.

Female student sitting on a podium

This 8-week summer program is designed to immerse participants in the cutting-edge field of brain science, providing them with firsthand experience in neuroscience research. JHIBS serves as a unique platform for students to gain exposure to the complexities of the brain, understand the latest scientific research methods, and discover potential career paths in this rapidly evolving discipline.

By participating in this program, students receive invaluable mentorship from leading experts in the field and contribute to meaningful research that could have long-term implications for understanding brain function and treating neurological diseases.

This initiative highlights Johns Hopkins University’s commitment to advancing neuroscience research and education while fostering the next generation of scientists and medical professionals with a solid foundation in brain science.​​

9. GeneLab for High Schools (GL4HS)

  • Location : NASA, varies
  • Subfield : Space life sciences
  • Important Dates : N/A.

GeneLab for High Schools (GL4HS) is an innovative program at the forefront of biology research opportunities for high school students, particularly those fascinated by the convergence of biology and space exploration.

biology styd

This unique initiative, developed by NASA, seeks to involve students in analyzing biological data derived from spaceflight experiments. Participating in GL4HS gives students a rare chance to work with data that could provide insights into how microgravity and other space conditions affect life beyond Earth’s atmosphere.

This program not only offers an introduction to astrobiology and space life sciences but also equips students with valuable skills in data analysis and scientific research methods.

The focus on real-world data from space missions underscores the program’s commitment to advancing our understanding of life in space and preparing students for futures in STEM fields where they might one day contribute to groundbreaking discoveries.

10. Texas Tech University’s Research Program

  • Location : Lubbock, Texas
  • Subfield : Health sciences
  • Important Dates : Application deadline: February 15, 2024.

The Texas Tech University’s Research Program emerges as a significant opportunity for high school students in the landscape of biology research opportunities, offering a platform for participants to delve into health sciences research.

Two students talking to each other.

This 7-week intensive program, based in Lubbock, TX, is designed to immerse students in a research-based environment where they can work alongside Texas Tech’s General Health Sciences Center professors.

The program not only introduces students to the fundamentals of scientific research but also exposes them to weekly seminars and discussion sections, enriching their understanding of current issues and methodologies in health sciences. Additionally, field trips are organized to provide a broader perspective on the real-world applications of their research.

This initiative is structured to build students’ knowledge and skills in health sciences and inspire them to consider future careers in this vital field. Texas Tech University’s Research Program is pivotal in cultivating the next generation of scientists and healthcare professionals​​by providing high school students with university resources and mentorship.

11. University of Chicago’s Research in the Biological Sciences

  • Location : University of Chicago
  • Subfield : Molecular biology, microbiology, cellular biology

The University of Chicago’s Research in the Biological Sciences (RIBS) is a standout program in biology research opportunities for high school students. This intensive four-week summer course is designed to immerse students in various cutting-edge molecular, microbiological, and cell biological techniques currently used in research laboratories.

biology student

Set against the backdrop of one of the nation’s leading research universities, RIBS participants spend most of their days in the lab, gaining hands-on experience beyond the standard high school curriculum.

Starting with basic lab techniques, the course gradually moves towards more specialized molecular methods in cell biology, genetics, developmental biology, and cancer biology. The highlight for many students is the opportunity to conduct an independent project, allowing them to apply their newfound skills to fundamental research questions.

This program not only provides participants with a glimpse into the life of a research scientist but also equips them with the knowledge and experience to pursue further studies and careers in the biological sciences.

12. Waksman Student Scholars Program

  • Location : Rutgers University
  • Subfield : Molecular biology, bioinformatics
  • Eligibility : High school students and their teachers

The Waksman Student Scholars Program (WSSP) offers a unique opportunity among biology research opportunities for high school students, focusing on molecular biology and bioinformatics.

Young woman sitting on the floor next to a pile of books.

This distinctive program, hosted by Rutgers University, enables high school students and their teachers to engage in genuine research projects over the academic year, starting with a summer institute.

The program’s hands-on approach allows students to work on real scientific problems. By analyzing DNA sequences that could be published in scientific databases, students contribute to understanding molecular biology.

The WSSP is not just about conducting experiments; it also encompasses data analysis and interpretation, providing participants with a comprehensive experience in scientific research. By working alongside research scientists and utilizing cutting-edge technology and methodologies, students gain a deep understanding of how science operates outside of the traditional classroom setting.

13. Research Science Institute (RSI)

  • Location : Center for Excellence in Education
  • Subfield : Scientific research and collaboration
  • Eligibility : Exceptional high school students

The Research Science Institute (RSI), hosted by the Center for Excellence in Education, represents one of the premier biology research opportunities for high school students globally. This highly selective summer program gathers some of the most promising students worldwide to engage in rigorous scientific research.

biology research project

Participants have the unique opportunity to conduct original, cutting-edge research in biology, chemistry, physics, and engineering. The program combines on-campus coursework in scientific theory with hands-on research in a state-of-the-art laboratory under the mentorship of leading scientists and researchers.

This immersive, six-week experience at the Massachusetts Institute of Technology ( MIT ) is designed to challenge and expand students’ understanding of their chosen field of study. It fosters a community of young scientists dedicated to pursuing careers in science and technology.

Beyond the laboratory, RSI provides a comprehensive experience with guest lectures and seminars, offering students insights into the latest scientific discoveries and research methodologies. This program accelerates participants’ academic careers and builds a strong foundation for future scientific community contributions.

14. Aspiring Scientists Summer Internship Program (ASSIP) – George Mason University

  • Location : Options for remote, in-person, or hybrid formats
  • Subfield : Various STEM fields, including astronomy, biochemistry, drug discovery, environmental science
  • Eligibility : Minimum age of 15 or 16 by June 18th, 2024, depending on the lab type
  • Important Dates : June 18 – August 9, 2024.

The Aspiring Scientists Summer Internship Program (ASSIP) at George Mason University epitomizes a premier example of biology research opportunities for high school students, offering an immersive dive into the world of scientific research.

Female student writing in a desk while holding her phone.

Over 8 weeks, participants are granted the unique opportunity to work alongside George Mason University’s distinguished faculty and researchers, utilizing state-of-the-art equipment and technologies to explore diverse fields within biology, including neuroscience, biochemistry, environmental science, and more.

This program is tailored to foster scientific skills and knowledge and enhance participants’ scientific writing and communication abilities, crucial competencies for budding scientists. Furthermore, ASSIP strongly emphasizes career exploration within STEM fields, facilitating discussions and meetings with role models to help students envision potential career paths.

The program’s flexibility to offer remote, in-person, or hybrid formats ensures that a broad range of students can participate, making cutting-edge scientific research accessible to those at the critical stage of shaping their future academic and professional pursuits.

15. World Science Scholars

  • Subfield : Science
  • Eligibility : High school students passionate about science

The World Science Scholars program is a transformative initiative among biology research opportunities for high school students focusing on expanding the horizons of exceptionally talented young individuals in science and mathematics.

biology research project

This program, designed for students with remarkable abilities in these areas, aims to further challenge and develop their talents through advanced online courses and collaborative projects. Participants have the rare opportunity to engage with leading scientists and educators, gaining insights into complex scientific topics that extend well beyond the standard high school curriculum.

The program deepens their understanding of scientific principles and encourages them to apply these concepts innovatively, potentially contributing to real-world solutions. Moreover, the World Science Scholars program fosters a global community of like-minded peers, providing a supportive network for these young scholars to exchange ideas and inspire one another.

Through this initiative, students are equipped with the knowledge, skills, and connections that can propel them to the forefront of scientific research and discovery, setting the foundation for future endeavors in biology and other scientific fields.

What Skills Can Students Gain from Participating in Biology Research?

Participating in biology research opportunities for high school students equips young scholars with a multifaceted skill set beyond traditional classroom learning. Firstly, students develop a strong foundation in scientific inquiry and analytical thinking , learning how to formulate hypotheses, design experiments, and interpret data. These opportunities often require students to engage in critical thinking and problem-solving, invaluable skills in any academic or professional setting.

Furthermore, participation in research projects enhances students’ technical competencies, including proficiency in laboratory techniques, use of scientific equipment, and familiarity with statistical software, essential for pursuing advanced studies and careers in the sciences.

What Are Unique Features of Some High School Biology Research Opportunities?

The landscape of biology research opportunities for high school students is diverse, offering a range of unique features that cater to different interests, skills, and career aspirations.

Male Biology student looking through a microscope surrounded by plants.

One distinctive aspect is the breadth of research areas available, from environmental science and sustainability efforts at programs like the Brown Environmental Leadership Labs (BELL) to the cutting-edge biomedical and genomics research conducted through initiatives like the Broad Summer Scholars Program and the GeneLab for High Schools (GL4HS) project. These programs often provide access to state-of-the-art laboratories and equipment, allowing students to conduct experiments and analyses on par with professional research settings.

Another unique feature is the emphasis on real-world impact and interdisciplinary collaboration. For instance, projects may tackle pressing global challenges, such as climate change or infectious diseases, encouraging students to apply their biological knowledge to develop viable solutions.

Additionally, many programs foster collaboration across scientific disciplines, enabling students to see the interconnectedness of biology with fields like chemistry, physics, and computational science, thus broadening their perspectives and enhancing their problem-solving skills.

The mentorship component is also a hallmark of these research opportunities. Students receive guidance from experienced scientists and researchers. This mentorship extends beyond laboratory techniques, encompassing professional development, scientific ethics, and career planning.

Furthermore, some programs emphasize community engagement and leadership development, preparing students to communicate scientific knowledge effectively to the public and to lead future scientific endeavors.

Finally, the opportunity for students to contribute to original research that can be published or presented at scientific conferences is a significant feature that sets these programs apart. This not only adds to the academic credentials of young scholars but also instills a sense of accomplishment and contribution to the scientific community.

How Do High School Biology Research Programs Prepare Students for College?

High school biology research programs offer a robust preparation for college by immersing students in real-world scientific research, thereby equipping them with a comprehensive set of skills and experiences.

Participating in biology research opportunities for high school students allows individuals to gain hands-on experience in the lab, familiarizing them with experimental procedures, data analysis, and applying scientific methods to solve complex problems—skills directly transferable to college-level biology courses.

Additionally, these programs often involve critical thinking and interdisciplinary learning, encouraging students to integrate knowledge from various scientific fields, which enhances their ability to tackle the multifaceted challenges they will encounter in higher education.

The collaborative nature of research also teaches students teamwork and leadership as they learn to work effectively with peers and mentors. This fosters a sense of community and mutual respect that is vital for academic and professional growth.

Exploring biology research opportunities for high school students opens doors to a world of scientific inquiry and discovery, laying a solid foundation for future endeavors in the vast field of biology.

These programs offer more than just a deep dive into various biological subfields; they provide a platform for personal and professional growth, skill development, and invaluable networking opportunities with peers and mentors alike.

As students participate in these research opportunities, they enrich their understanding of biology and contribute to meaningful scientific advancements. Whether your interest lies in the intricate workings of the human genome, the complexities of ecosystems, or the frontiers of bioengineering, these opportunities are stepping stones to a future where you can make a significant impact.

Armed with experience, knowledge, and a network of like-minded individuals, students who take advantage of these opportunities are well on their way to becoming the next generation of scientists, ready to tackle the challenges and opportunities that lie ahead in pursuing scientific discovery and innovation.

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10 Biology Summer Research Programs for High School Students

Photo of Janos Perczel

By János Perczel

Co-founder of Polygence, PhD from MIT

7 minute read

Biology and the Health Sciences consistently rank among the top five college majors that American undergraduates often choose . It is also one of the most interdisciplinary and versatile fields of academic research, with fascinating intersections with chemistry, math, physics, psychology, and computer science. Many students ask us where they can go to get hands-on biology research experience over the summer. You asked and we listened!

Here is our list of 10 curated biology summer programs for aspiring high school students. If you are searching for a virtual research opportunity, you can also consider doing a biology research project through Polygence .

1) Center for Talented Youth (CTY) Honors Biology 

Hosting institution: Johns Hopkins University

Cost: $1,455

Format: Online

Application deadline: rolling admissions

This is an online research course where students will learn complex biological concepts in an online environment. It is great for students who are getting ready for AP biology. Students will explore the structures, functions, and processes of living organisms and their interactions with the environment. Students will be assessed through quizzes, tests, lab reports, interactive discussion forums, and case studies. This course also provides monthly synchronous class times and allows students  to schedule one-on-one virtual meetings with the instructor.

Do your own research with Polygence this summer!

Polygence pairs you with an expert mentor in your area of passion. Together, you work to create a high quality research project that is uniquely your own.

2) Carl B. & Florence E. King Foundation High School Summer Program

Hosting institution: MD Anderson Cancer Center

Cost: stipend is provided for housing and expenses

Format: In person (Houston, TX - open to Texas high school students only )

Application deadline: January 17, 2024

This program offers a rare opportunity to participate in a research project in one of the biomedical courses under the guidance of a full-time MD Anderson Cancer Center faculty member. Students will learn the importance of basic principles that form the basis of scientific research. Selected students will work in the MD Anderson labs during the week, participating in hands-on research. Students will walk away from the experience with a clear understanding of what it means and what it’s like to be a researcher in the biomedical sciences. This program is only open to current Texas high school seniors.

Please also reference our more comprehensive guide to medical research opportunities for high school students .

Research YOUR fave areas of Biology and Medicine

Polygence pairs you with an expert mentor in to create a passion project around biology and medicine. Together, you work to create a high quality research project that is uniquely your own. We also offer options to explore multiple topics, or to showcase your final product!

3) Pediatric Oncology Education (POE) Program 

Hosting institution: St. Jude Children’s Research Hospital

Cost: Funded Internship

Format: In person (Memphis, TN)

Application deadline: February 1, 2024

This program offers highly motivated students a chance to get exposure to cutting edge cancer research. It also helps to prepare students for professions in the biomedical sciences, nursing, and pharmacology, among other subfields that require oncology research experience and insight. Students will work with scientists, postdoctoral fellows, as well as research physicians.

4) Summer Research Program (SRP)

Hosting institution: Indiana University’s Simon Cancer Center

Format: In person (Indianapolis, IN)

Application deadline: February 1, 2024  (Estimated deadline based on previous year)

The Indiana University Simon Cancer Center Summer Research Program (SRP) aims to increase the proportion of underrepresented high school and undergraduate students engaging in the biomedical sciences. Students will receive hands-on experience and gain exposure to a wide range of basic science, translational, and clinical research activities. This is an 8-week program. High schoolers who are seniors as well as undergraduate students in their junior year and above are eligible to apply.

5) Anson L. Clark Scholars Program

Hosting institution: Texas Tech University

Format: In person (Lubbock, TX)

Application deadline: February 15, 2024

This is a 7-week intensive program that offers selected students the chance to work with professors at Texas Tech’s General Health Sciences Center. This program is research-based, but it also exposes students to weekly seminars, discussion sections, as well as field trips.

6) Pre-College Scholars Residential-Track Program

Hosting institution: University of California, Berkeley

Cost: $15,00 (for 8-week session); $14,500 (for 6-week session)

Format: In person (Berkeley, CA)

Application deadline: March 11, 2024

This program offers students from all over the world a chance to experience college campus life at UC Berkeley! Students get the chance to enroll in college-level courses taught by Berkeley professors, earn college credit for their work, all while experiencing university campus life with a cohort of students. Throughout the program, students can enroll in 2 different courses offered through Berkeley’s Summer Sessions program and participate in a series of extracurricular activities and excursions.

7) Research Mentorship Program

Hosting institution: University of California at Santa Barbara (UCSB)

Cost: $11,874

Format: In person (Santa Barbara, CA)

Application deadline: March 18, 2024

This program allows students to get exposure to a wide variety of interdisciplinary research in the biological sciences and beyond. Students will get a chance to engage in hands-on project-based learning and will also be paired with a research mentor - a graduate student, postdoc, or faculty member to conduct college-level research. Students can earn a total of 8 university credits by enrolling in two interdisciplinary research courses - an exploratory course and a lecture course. There are 24 different fields that students can choose from.

8) Provost’s Summer Mentorship Program (SMP)

Hosting institution: University of Pennsylvania

Format: In person (Philadelphia, PA)

Application deadline: May 2024 (Estimated based on previous year)

The Summer Mentorship Program (SMP) is a flagship program from the University of Pennsylvania’s Vice Provost for Student Engagement (VPSE) division. It is designed to expose first-generation college students to rigorous academic research. Only students studying in high schools in Philadelphia are eligible. In this 4-week immersion summer program, participating students are paired with one of five affiliate University of Pennsylvania Professional Schools.

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Register to get paired with one of our expert mentors and to get started on exploring your passions today! You have agency in setting up your schedule for this research. Dive in now!

9) Clinical Neuroscience Immersion Experience (CNI-X)

Hosting institution: Stanford University

Cost: $1,495- $2,795

Format: In person (Stanford, CA) as well as online options available

Application deadline: March 1, 2024

This 10-day program provides students with basic exposure to the study of neuroscience, psychiatry and brain science in addition to a potential chance to finish a cooperative capstone project. Students get the chance to work with Stanford University professors and researchers and engage in exciting and cutting edge research in the standards of neuroscience, clinical neuropsychiatry, and other areas within neuroscience research. In addition to participating in interactive lectures, students will also work in small teams to design solutions to pressing issues related to psychiatry, psychology, and neuroscience.

10) Research in the Biological Sciences (RIBS)

Hosting institution: University of Chicago

Cost: $14,000

Format: In person (Chicago, IL)

Application deadline: January 18, 2024

RIBS is a four-week intensive program that exposes students to a broad range of topics within biology, including molecular, micro- and cell biological lab techniques. Students get hands-on “bench” research experience. This course is taught using a project-based approach and moves from a basic survey of lab techniques to more applied learning. Students who participate in RIBS will spend most of their days in the lab! Lectures and teaching material will also be provided to familiarize students with background knowledge and to introduce students to new ideas and concepts. Last but not least, students will participate in a research forum at the end of the course and everyone will get a chance to present their project results and findings.

Interested in an independent biology research path? Join Polygence and do your own biology research project guided by an expert mentor!

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Want to Learn More?

Join Polygence and do your own research project tailored towards your passions and guided by one of our expert mentors!

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200 Biology Research Topics For High School

Research papers are an integral part of high school. A detailed research paper is required in most of the subjects, and one just cannot back out, as this is a part of their curriculum. However, what is even more laborious than writing the whole research paper? Finding a good topic!

The same goes for biology. Although there are plenty of topics out there that a student can write about, choosing a relevant topic is often a taxing job since they may need to brainstorm various factors. However, it can be disentangled with clarity and appropriate counsel. 

While this subject deals with various areas like cells, animals, plants, and human anatomy; in this post, we would appraise you with 200 biology research topics handpicked for aspiring high schoolers, to make their task easier.

Biology Research Topics- Finding the Right one 

Choosing the right topic can be a long expedition. However, it can be effortless when students are clear about their requirements personally and academically. To discern the same, it can be a fair idea to look into some crucial attributes that can lead a high schooler towards a desired biology research topic.

  • Know your niche

Learners often have one or more notions that they feel enticing to learn and travel with. For instance, a student may like to learn and work in cell biology, while another may love studying more about genetics. Knowing the niche in which they can excel can make their topic selection facile.

  • Stick to one Narrow topic

After comprehending the choice of the niche, the scholar may need to narrow down to one topic which is intriguing and manageable at the same time. Evidently, “Study of Mitochondria and its benefits ” is a better choice than “Cell biology”. Choosing a righteous narrow topic may mitigate the constraints like taxing research and report length later. 

  • Consult mentors and Peers

Instructors are always available to answer the queries of pupils. Students can take their inputs to add strength to their research topics. Mentors not only assist to choose the right topic but also can advise a few changes in the choice to make it finer. Say, a student has chosen “Study of DNA”, the mentor can suggest modifying it to ”Role of DNA in Curing Diseases”. Brainstorming sessions with peers may also ameliorate the topic decision 

  • Ensure the School Regulations 

High school research is often guided by some crucial regulations to stipulate students work efficiently. Students may need to choose a topic somehow related to the academic syllabus. Further, they may be stimulated to address burning issues to create awareness. Adhering to the guidelines can mitigate the need for rectifications later. 

200 Biology Research Topics- To Start With Right Away

High School biology has several sections to choose from, which may make it taxing for students to resolute on one choice. Here is a sizable list of 201 biology research topics for high schoolers which they can start instantly: 

Cell Biology

  • Animal cell and its structure
  • Functions of Cells
  • Mitochondria- the PowerHouse of cell
  • Functions of an RBC- How does it transfer Oxygen?
  • Functions of a WBC- How does it retain immunity?
  • Components of Plant Cell
  • Plant Cell Vs. Animal Cell
  • Cell Division
  • Mitosis Vs. Meiosis
  • Bacteria- How is it different from cells?
  • Cell structure and antibiotic Resistance
  •  What are cancer cells? Are they Dangerous?
  • Mushrooms and Molds- A brief Study of Fungi
  • Curing Cancer Cells
  •  Stem Cells- A brief Study
  • Embryonic vs Induced Pluripotent Stem Cells
  • Adults vs Induced Pluripotent stem Cells 
  • The Build of Human DNA
  • Components of DNA
  • Chromosomes- A brief Study
  • Double Helix Structure of DNA
  • Singled celled Organisms and their DNA
  • Bacteria and its DNA
  • X and Y chromosomes
  • Genetic INformation in DNA
  • DNA modification- Its application in medicine
  • Cancer and DNA modification
  • DNA of dinosaurs
  • Do plants have DNA?

Molecular Biology

  •  Gene- A Brief History
  • Components of Gene
  • Drugs for Humans
  • Vaccine vs Drugs
  • A brief study of Gregor Mendel
  • Dominant vs recessive genes
  • Widow’s peak illustration of Genes
  • What is mutation?
  • Hormones and their functions
  • Artificial hormones for animals
  • PCR tests for analyzing DNA
  • Structure of a Molecule
  • Structure of prion
  • DNA transcription-Its applications
  • Central Dogma
  • Heredity and traits 

NeuroBiology

  • Human Nervous System- A brief description
  • Structure and components of neurons.
  • Neurons vs Animal cell
  • A brief study of electric pulses in the human brain
  • Altering reaction speed in the brain
  • Alzheimer’s disease- its study in genetics
  • Neurobiological Degeneration- does it have a cure?
  • Brain injuries and cures
  • Spinal Cord Injuries and cures
  • Narcolepsy 
  • A brief study of mental health with neurobiology
  • Various emotions and their neural pulses
  • A brief study of the human neurological system

Genetics 

  • A brief study of ancient cloning techniques
  • Reasons behind Abortion. Is it ethical
  • Procedure of abortion
  • What is human cloning? 
  • Side effects of Human Cloning
  • Goals of Human Cloning
  • Transplantation vs Human Cloning
  •  Perfect child theory. Is it ethical?
  • Gene cloning- Removal of undesirable traits.
  • Genes and ethics
  •  Gene therapy
  • Gene therapy vs Cloning
  • Curing Cancer with Gene therapy
  • Cons of Cloning

Environment and Ecology

  • A Brief Study of Charles Darwin 
  • The Evolution Theory
  • Natural Selection- the complete study
  • Mutation- A brief study with examples
  • Adaptations in animals- Study with 5 examples
  • Divergent evolution
  • Convergent evolution
  • Parallel Evolution
  • Components of a sustainable environment
  •  Environmental Friendly Practices
  • Role of Plastics in pollution
  • Alternatives for Plastic
  • Deforestation
  • Solutions for Deforestations
  • Ecological concerns
  • History of the Ozone layer
  • Change in ecology- A study of extinct animals
  • Effects of Fast Food factories
  • Reversing ecological changes
  • Climate changes and their effects
  • Global Warming
  • GreenHouse effect

Plants And Animals

  • A study of Endangered animals
  • Melatonin therapy
  • Benefits of growing plants in the home
  • A brief study of popular plant diseases
  • Effects of pesticides and herbicides
  • Immunity in plants
  • The Banana Pandemic
  • Weedy and Invasive Plants
  • Genetic analysis of plants
  • Medicinal plants- A brief study
  • Evolution in plants
  • Plants in Food production
  • Components of Photosynthesis
  • A brief study of Phytohormones
  • Antibiotics and phytocides
  • A detailed study of Stomata structure
  • Grafting techniques
  • Roots and stem modification
  • Real-life examples of taxonomy
  • Study of sweet potato Virus
  • Classifications of animals
  • Evolution of marine life
  • Prehistoric aquatic life- study of enormous creatures
  • Evolution of land-based life
  • Zoos and petting- are they ethical?
  • Drug testing on animals
  • A brief study of cows and their benefits on Humans
  • Food chain and classification
  • Vegans vs carnivores
  • Resistance in animals
  • Behavioral changes  in animals due to evolution
  • A brief study of intelligence in animals
  • Migration of birds- a brief study.
  • Study of extinct species and bringing back them
  • Types of dinosaurs
  • Male pregnancy in animals 

Marine Biology

  • Oil spilling in the ocean- strategies to mitigate
  • Ocean Acidification and its effects
  • Evolution in aquatic animals
  • Camouflage mechanism
  • Petting marine species
  • Study on Ultrasonic communication in whales
  • Role of marine shows and debate on its ethics
  • Are mermaids real?
  • A study of immortal marine species
  • Plankton and its medicinal uses
  • Underwater ecologies
  • Freshwater And Seawater
  • A brief study of coral reefs
  • Medicinal values of coral reef plants
  • Tectonic plates and underwater earthquakes

Cardiovascular 

  • Heart Rhythm and Arrhythmias
  • Preventive Cardiology
  • Hypertension
  • InterventionalCardiology
  • Heart Failure (Myocardial Biology)
  • Heart Disease in various age groups
  • Signs, symptoms and first aid for Heart Disease.
  • A study of ECG and other apparatus

Hormone Biology

  • Pregnancy and hormonal changes
  • Bipolar Disorder
  • Endocrine and related diseases
  • MEntal health in different genders. 
  • Stress and immunity

Reproductive System

  • Cervical Cancer and its cure
  • A brief study of puberty
  • Contraception
  • Infertility
  • Test tube babies
  • The concept of surrogacy
  • Tubectomy and vasectomy
  • Male Reproductive complications and their cures
  • Female reproductive complications and their cure

Digestive System

  • Gastrointestinal tract- a brief study
  • Components of Digestive systems
  • A brief study of stomach and liver
  • Functions of intestines

Skeletal System

  • The function of the skeletal system
  • Type of bones
  • Functions of Sesamoid bones
  • Foods for healthy bones 
  • A brief study of Spinal Cord

Excretory System

  • The detailed study on Kidney and its Function
  • Gross Anatomy of the Urinary System
  • Reasons for Renal Calculi (Kidney Stones) and cures

Miscellaneous 

  • Coordination between muscular system and skeletal system 
  • Benefits of ecotourism
  • Extinction of bees- A brief study
  • The green revolution
  • US Grain economy
  • Agricultural practices for more yield
  • World trade of food
  • A brief study of Covid 19
  • Renewable energies and their effect on plants 
  • Bacteria and depression
  • Genes and neuron functions
  • Robotic surgeries- the study of the future. 
  • Benefits of organic farming
  • Study of various components of flower and a fruit
  • Diet and obesity
  • Various components of Brain
  • Diabetes and its cure
  • CRISPR and Genetic Engineering
  • A brief on Cell tissue engineering

Having a large number of alternatives often creates incertitude. The topics we put forward are all worth considering. Determining your area of interest can make your choice facile. For instance, if you feel genetics enticing, prefer choosing relevant topics. You may consider consulting researchers, faculty and pertinent professionals to add muscle to your research. Review our picks to see if any of those can fit your choice in making a credible research paper. 

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The power of scientific collaborations and the future of structural biology

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The idea of a scientific discovery is often linked to the eureka moment of a lone scientist, which then transforms our thinking. However, scientific discoveries are never made by individuals in isolation. They build on the work of countless researchers, and often require interdisciplinary and collaborative teams of researchers.

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  • Start date: 04 Jan 2022
  • Duration in months: 72
  • Funding: FNR – Luxembourg
  • Principal Investigator(s): Iris BEHRMANN Stephanie KREIS Elisabeth LETELLIER Simone Niclou (external) Barbara Klink (external) Johannes Meiser (external)

Building on our successful first Doctoral Training Unit in Cancer Biology (CANBIO) within the first FNR PRIDE program, we are keen to continue to provide state-of-the-art training for doctoral candidates in cancer research in Luxembourg. This proposal takes advantage of the network and expertise generated in CANBIO1, while incorporating novel scientific insight and addressing pertinent questions in the cancer field. In CANBIO1 our research focused on tumor escape mechanisms, investigating key aspects of intrinsic and induced escape mechanisms in response to therapy. The present application aims to generate new insight into the tumor ecosystem (TE) and to harness this knowledge for improved treatment options. Over the years, cancer research has moved from a tumor-centric view to an organ-type view of cancer recognizing the importance of the tumor microenvironment (TME) in tumor growth and progression. The clinical relevance of the TME is highlighted by the observation that pre-existing immune parameters correlate with patient survival, exemplified by the emergence of the immunoscore for the classification of gastrointestinal cancer. However beyond the immediate TME which includes stromal cells, infiltrating immune cells, extracellular matrix, available nutrients and secreted factors, cancer development and metastatic growth are also under distant organismal influences such as systemic immunity, the gut microbiome and metabolic conditions. Newly described forms of communication e.g. through extracellular vesicles have been recognized as important components of cellular interactions in the local TME and systemic circulation. In the context of immunotherapy there is growing appreciation that immune cell manipulation and recruitment need to be considered beyond the tumor site. For example, glioblastoma (GBM), a deadly brain cancer, is not only characterized by a highly immunosuppressive TME, but also displays systemic immune suppression, including immune cell dysfunction and T cell lymphopenia. Furthermore it is recognized that cancer metabolism is not limited to metabolic reprogramming of cancer cells, and increasing efforts aim to understand the metabolic interactions between cancer and non-neoplastic cells. Dietary interventions are studied to regulate nutrient availability at an organismal level and insight into the impact of the microbiome on cancer progression and treatment is gaining momentum. Such processes are of utmost importance in the context of metastasis, where colonization far away from the primary tumor relies on immunosuppressive and tumor supportive factors at a systemic level. Understanding the nature of these complex dialogues is at the center of this research program, which will allow for improved therapeutics that simultaneously target the cancer cell and multiple components of the TE. We value your feedback and inquiries. Contact prof. Iris Behrmann.

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Genetics and environment influence brain health outcomes, and so do social disparities. Inequality impacts health and makes it more difficult for ethnic and racial minority groups to access and receive quality treatment. In November at Neuroscience 2023, the annual meeting of the Society for Neuroscience, a panel of National Institutes of Health (NIH) leaders spoke about disparities in healthcare, and how they hope to address inequality in addiction treatment and mental healthcare through research practices.

Richard Benson , director of the Office of Global Health and Health Disparities at the National Institute of Neurological Disorders and Stroke (NINDS), said that historically, the NIH has focused on the biological component of disease. This has meant that research into environmental factors has not received the funding it needs. Benson summed up the institutes’ new research direction as going “beyond the biologic”. This means studying how racism, ableism, poverty, and other societal factors impact brain health, while improving NIH’s own practices so that they can conduct this research effectively.

Addressing the Social Causes of Addiction

Drug addiction is a major mental health issue in the United States where drug overdose has claimed over 100,000 lives in 2022, said Nora Volkow , director of the National Institute on Drug Abuse (NIDA). Overdose affects Alaska Native and American Indian communities the most .

Volkow said that past scientific practices have made it difficult for communities to trust in new initiatives. But signs of progress are being made. Beginning in 2020, NIH’s HEALing Communities Study aims to help addiction-affected communities engage in the research process. The project has funded work in 67 communities affected by the opioid crisis. The project unites leaders from local healthcare and justice settings to map out interventions that will help each community. An overarching goal of the project is to reduce opioid-linked overdose deaths by 40% over three years. Volkow said that considering social factors, such as whether poverty in the community was rural or urban, has been essential to the study.

Volkow also highlighted studies exploring how biology and inequality link together. NIH research has shown that infants exposed to opioids and alcohol in the womb show deficits in brain areas “necessary for self-regulation of emotional reactivity,” said Volkow. This link creates a cycle where discrimination and low income not only drive people to addiction, but also set their children up to be caught in the same trap. “Hopefully [the studies] can lead to policies that will support much fairer distribution of resources,” she added.

Racism’s Effect on the Brain

“The U.S. is facing a mental health crisis,” said Joshua Gordon , former director of the National Institute of Mental Health (NIMH). More than one in five Americans live with a mental illness. Minorities and people who live in underserved rural areas “bear a disproportionate burden from mental illness in the United States,” added Gordon. This can be a result of poverty. Low income and precarious housing can increase stress and depression. Gordon said NIH-funded research suggests “racism directly has impacts on mental health as well as indirectly through these other social determinants of health.”

The mechanisms by which this occurs are a hot topic of study, said Gordon. Small modifications to our DNA, called epigenetic marks, happen throughout our lives. Some of these marks appeared to mediate the link between experiences of racism and poor mental health, said Gordon. He added that this research is still at an early stage.

Changing Research Culture

The panel said that to pursue these research aims more effectively, the NIH also has to look at how its funding model maintains systems of inequality. The NIH awarded nearly 30,000 research grants to white principal investigators in 2022. Just 1,352 grants went to Black or African American principal investigators. Gordon said that the NIMH has promoted funding for research that investigators from minority backgrounds want to pursue. This has had encouraging results. “We’ve in the last two years doubled the number of investigators who are Black or African American who are applying to our grants,” he added.

Volkow said that social changes, such as creating a more inclusive culture within research, can also help. NIDA has released a guide explaining how to use respectful language when talking about addiction. The use of terms like “person with substance use disorder” rather than “addict” moves the target of the intervention from patient to disease. These changes are starting at the very top — NIDA plans to change its name to the National Institute of Diseases of Addiction as part of this process.

NIH funding could do much to reduce medical inequality if combined with changes to NIH’s culture and practices. The goal, said the panel, should be to build the NIH into an organization that can help all Americans. Volkow said that basic biomedical research still has an essential role. “The most consequential intervention that will help us change the stigma against addiction is developing treatments that show that you can actually recover because then people will stop actually looking at addiction as a moral failure,” she said.

About the Author

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RJ Mackenzie

RJ Mackenzie is a freelance science writer based in Glasgow, Scotland. Armed with neuroscience degrees from the University of Edinburgh and the University of Cambridge, RJ writes about all aspects of the brain and body.

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Aroke, E. N., Joseph, P. V., Roy, A., Overstreet, D. S., Tollefsbol, T. O., Vance, D. E., & Goodin, B. R. (2019). Could epigenetics help explain racial disparities in chronic pain? Journal of Pain Research, 12 , 701–710. https://doi.org/10.2147/JPR.S191848

Beauchamp, K. G., Lowe, J., Schrader, R. M., Shrestha, S., Aragón, C., Moss, N., Stephen, J. M., & Bakhireva, L. N. (2020). Self-regulation and emotional reactivity in infants with prenatal exposure to opioids and alcohol. Early Human Development, 148, 105119. https://doi.org/10.1016/j.earlhumdev.2020.105119

Qeadan, F., Madden, E. F., Mensah, N. A., Tingey, B., Herron, J., Hernandez-Vallant, A., Venner, K. L., English, K., & Dixit, A. (2022). Epidemiological trends in opioid-only and opioid/polysubstance-related death rates among American Indian/Alaska Native populations from 1999 to 2019: A retrospective longitudinal ecological study. BMJ Open, 12 (5), e053686. https://doi.org/10.1136/bmjopen-2021-053686

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Summer 2024 Student Research Fellowship Projects

iGEM students

SUNY Oneonta students are getting firsthand experience in their fields of study this summer through research and creative projects on topics ranging from endangered turtles to an abroad Shakespeare-intensive.

Thirty-six SUNY Oneonta students are involved in research and creative projects on and off campus through the university’s Summer Research Fellowship Program. Fellowship grants assist undergraduate and graduate students with costs related to participating in summer research and creative activity in either an independent or group project.

SUNY Oneonta faculty are mentoring students in projects ranging from investigating heat disparities in smaller urban zones to a Shakespeare-intensive study in Prague in the Czech Republic. Some of the research projects are continuations of projects from previous summers, such as the “Synthesis Completion of Melicopteline Derivatives,” “Characterization of Seiche in Regional Lakes” and “Detecting Exoplanets and Obtaining Stellar Spectra from the SUNY Oneonta Observatory.” Other summer research projects like “Implementing an Emotion Management in Sport Program: Training Staff for Summer Camp” and “(Re)Telling Stories of Change with Artificial Intelligence” are the first of their kind.

The 2024 Summer Research Fellowship recipients receive financial support from University Advancement’s Student Research and Creative Activity Grant Fund , with additional funding from Alumni Engagement. Students receive grants of up to $3,000 each, with a maximum of $6,000 for two or more students working together on a single project. Students who must remain on campus for their research stay at SUNY Oneonta for free this summer. The students will share their projects with the campus community during the Summer Research Fellowship Showcase from Sept. 23 to 26.

“The summer fellowships provide students with a great opportunity to do concentrated, in-depth, faculty-led research and creative projects without sacrificing their ability to earn money at a time when so many students are home working summer jobs,” said Audrey Porsche, associate director of scholarly activities.

Team Oneonta Prepares for iGEM This Fall

In a partnership with students and faculty from Hartwick College, SUNY Oneonta’s iGEM (International Genetically Engineered Machine) team is preparing for the annual iGEM Jamboree this fall in Paris, France. This year, the team is focused on improving the sustainability of wastewater reprocessing by developing biological tools that can adjust pH and remove undesirable or hazardous contaminants. Team Oneonta’s project was inspired by the recent surge of investment in advanced manufacturing in New York following the CHIPS and Science Act.

“I love their motivation and enthusiasm,” said Associate Professor of Chemistry and Biochemistry Kelly Gallagher. “They’re getting excited about what they’re learning and they feel like they’re doing something real – and that’s energizing for me. It helps students see scientific work in the context of how it happens in the real world, and if science is going to do good for people or produce a product not just for use in the lab.”

iGEM students prepare for competition

The team is split into two groups, with one group focused on the scientific development of the technology under Gallagher, SUNY Oneonta faculty Jill Fielhaber and Bill Vining, and three Hartwick faculty members. The other group of students is considering the ethical and compliance issues in modern biomedical science with Adjunct Faculty Daniel Patrone from the Philosophy Department, reviewing Gallagher’s group’s compiled data and research.

“My favorite part of working on this research so far has been the abundance of collaboration among such a variety of demographics,” said Early Childhood Education rising senior Taylor Schroeder at SUNY Oneonta and member of Patrone’s group. “I have been able to speak with CFOs, scientists and researchers, community members and best of all, the diverse mindset and career paths of our very own SUNY Oneonta and Hartwick students.”

iGEM students prepare for competition

Habitat Selection of Wood Turtles in the Oneonta Area

At a stream in the Oneonta area, Associate Professor of Biology Elizabeth Bastiaans and her students, Madison Stanley and Victoria Prouty, are collecting and analyzing data to help conserve the local population of wood turtles. Their research aims to answer the question: “In an area highly impacted by invasive species and anthropogenic activity, what types of habitat characteristics do wood turtles preferentially select?” The variables Stanley and Prouty are recording include water temperature, stream clarity, weather, sunlight, foliage type, available food sources and whether the turtle was found on land or in water.

Habitat Selection of Wood Turtles

“Both students are collecting data that will help us conserve our local population of wood turtles, an endangered species that lives in rivers and forests across northeastern North America,” said Bastiaans. “Wood turtles are usually considered sensitive to human impacts, but we have a surprisingly high number of them in our area, and we want to better understand what habitats and potential prey species to conserve or restore so we can keep this population around.”

This summer, Stanley, a Biology major who received a Summer Research Fellowship grant, is studying how wood turtles adapt in their natural habitat with high levels of human impact. Prouty, a Biology graduate student at SUNY Oneonta, is collecting tissue samples from local turtles and is using a technique called stable isotope analysis to reconstruct their diets. “She’s comparing samples from modern turtles to samples from turtles in our vertebrate museum collection, collected about 60 years ago before the species was endangered,” said Bastiaans.

Habitat Selection of Wood Turtles

Water Sampling for Trace Elements and Stable Isotopes in Otsego County

Throughout Otsego County, Assistant Professor of Geography and Environmental Sustainability Jacob Warner and rising senior Cassidy Celic are collecting water samples as part of a larger research collaboration project with the University of Arizona, Louisiana State University and other institutions. The larger project has researchers studying an aquatic snail species known as the marsh rams-horn and developing a paleoclimate archive to reconstruct the hydroclimate of understudied regions in North America.

“We’re collecting samples from water bodies all over Otsego County for chemical analysis,” said Warner. “We will have these samples analyzed for stable isotopes of oxygen and hydrogen, and hopefully also various elemental concentrations of strontium, barium, magnesium, calcium and others. These analytical parameters will tell us about the underlying bedrock’s weathering, pollution, local water cycle and local hydroclimate.”

Trace Elements and Stable Isotopes

Along with water samples, Warner and Celic are recording what they see in other plant and animal life, climate and other aspects of the environment. Combined with collecting previously published data for comparison, their goal is to create an environmental map of Otsego County primarily focusing on water chemistry. “This type of map is useful for geologists, archaeologists, climatologists, biologists, forensic scientists and anyone interested in the chemistry of surface waters,” said Warner.

“For this project, I had to find and map out various open access bodies of water, like creeks, ponds, lakes, all across Otsego County, collect samples of water and weather data, and transcribe previously published data from the county,” said Celic. “My favorite part of working on this research is getting to explore more of Otsego County that I wouldn’t have seen otherwise. I’m able to explore and create some core memories while doing something I love!” After graduating, Celic plans to work in New York state, in either the forestry or conservation and research fields.

Trace Elements and Stable Isotopes

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