TS SET Life Sciences Syllabus – Download the Life Sciences Syllabus PDF

TS SET Life Sciences Syllabus: Syllabus of Life Science comprises of fields of science that involve the scientific study of living organisms, like plants, animals, and human beings. Life science also known as biological science, is a more advanced course that has detailed information about the different branches related to Biotechnology, Biochemistry, Genetics, Ecology, Microbiology, Immunology, Molecular biology, etc. For more information about TS SET Life Sciences Syllabus, keep reading this article.

TS SET Life Sciences Syllabus

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TS SET Life Sciences Syllabus

The life science syllabus includes 13 chapters which are, 1. Molecules and their Interaction Relevant to Biology, 2. Cellular Organization, 3. Fundamental Processes, 4. Cell Communication and Cell Signaling, 5. Developmental Biology, 6. System Physiology – Plant, 7. System Physiology – Animal, 8. Inheritance Biology, 9. Diversity of Life Forms, 10. Ecological Principles, 11. Evolution and Behavior, 12. Applied Biology, 13. Methods in Biology. To download the PDF file of the TS SET Life Sciences Syllabus scroll below.

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  • Structure of atoms, molecules, and chemical bonds.
  • Composition, structure, and function of biomolecules.
  • Stabilizing interactions (Van der Waals, electrostatic, hydrogen bonding, hydrophobic interaction, etc.).
  • Principles of biophysical chemistry (pH, buffer, reaction kinetics, thermodynamics, colligative properties).
  • Bioenergetics, glycolysis, oxidative phosphorylation, coupled reaction, group transfer, biological energy transducers.
  • Principles of catalysis, enzymes and enzyme kinetics, enzyme regulation, mechanism of enzyme catalysis, isozymes
  • Confirmation of proteins (Ramachandran plot, secondary structure, domains, motif, and folds).
  • Conformation of nucleic acids (helix (A, B, Z), t-RNA, micro-RNA).
  • Stability of proteins and nucleic acids.
  • Metabolism of carbohydrates, lipids, amino acids nucleotides, and vitamins.


  • Membrane structure and function.
  • Structural organization and function of intracellular organelles.
  • Organization of genes and chromosomes.
  • Cell division and cell cycle.
  • Microbial Physiology.


  • DNA replication, repair, and recombination.
  • RNA synthesis and processing.
  • Protein synthesis and processing.
  • Control of gene expression at transcription and translation level

Cell communication and cell signaling

  • Host-parasite interaction.
  • Cell signaling
  • Cellular communication
  • Cancer
  • The innate and adaptive immune system


  • Basic concepts of development
  • Gametogenesis, fertilization, and early development
  • Morphogenesis and organogenesis in animals
  • Morphogenesis and organogenesis in plants
  • Programmed cell death, aging, and senescence


  • Photosynthesis
  • Respiration and photorespiration
  • Nitrogen metabolism
  • Plant hormones
  • Sensory photobiology
  • Solute transport and photoassimilate translocation
  • Secondary metabolites
  • Stress physiology


  • Blood and circulation, and Cardiovascular System
  • Respiratory system, and Nervous system
  • Sense organs
  • Excretory system
  • Thermoregulation
  • Stress and adaptation
  • Digestive system
  • Endocrinology and reproduction


  • Mendelian principles: Dominance, segregation, independent assortment.
  • Concept of gene: Allele, multiple alleles, pseudoallele, complementation tests.
  • Extensions of Mendelian principles.
  • Gene mapping methods.
  • Extrachromosomal inheritance.
  • Microbial genetics.
  • Human genetics and Quantitative genetics.
  • Mutation and Structural and numerical alterations of chromosomes.


  • Principles & methods of taxonomy
  • Levels of structural organization
  • Outline classification of plants, animals & microorganisms
  • The natural history of the Indian subcontinent
  • Organisms of health & agricultural importance Plus their conservation concern


  • The Environment, Habitat, and Niche
  • Population Ecology
  • Species Interactions
  • Community Ecology, Ecological Succession
  • Ecosystem Ecology
  • Biogeography
  • Applied Ecology and Conservation Biology


  1. The emergence of evolutionary thoughts
  2. Origin of cells and unicellular evolution
  3. Paleontology and Evolutionary History
  4. Molecular Evolution
  5. The Mechanisms
  6. Brain, Behavior, and Evolution


  • Microbial fermentation and production of small and macromolecules
  • Application of immunological principles, vaccines, diagnostics. Tissue and cell culture methods for plants and animals.
  • Transgenic animals and plants, molecular approaches to diagnosis and strain identification.
  • Genomics and its application to health and agriculture, including gene therapy.
  • Bioresource and uses of biodiversity.
  • Breeding in plants and animals.
  • Bioremediation and phytoremediation.
  • Biosensors


  • Molecular Biology and Recombinant DNA methods
  • Histochemical and Immunotechniques
  • Biophysical Method
  • Statistical Methods
  • Radiolabeling techniques
  • Microscopic techniques
  • Electrophysiological methods
  • Methods in field biology

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