Class 12th Biology Genetics and Evolution Notes


๐Ÿ“Œ INTRODUCTION

  • Genetics is the branch of biology that studies heredity and variation.
  • Heredity: Transmission of traits from parents to offspring.
  • Variation: Differences in traits among individuals of a species.
  • Evolution: Gradual changes in organisms over generations, leading to new species.

๐Ÿ”ฌ PART 1: PRINCIPLES OF INHERITANCE AND VARIATION

๐ŸŒฟ Gregor Mendel โ€“ Father of Genetics

  • Conducted experiments on pea plants (Pisum sativum).
  • Proposed Laws of Inheritance.

๐ŸŸข Mendelโ€™s Laws of Inheritance

1๏ธโƒฃ Law of Dominance โ€“ One allele is dominant over the other.
2๏ธโƒฃ Law of Segregation โ€“ Alleles separate during gamete formation.
3๏ธโƒฃ Law of Independent Assortment โ€“ Genes for different traits assort independently.

๐ŸŒผ Monohybrid Cross (One Trait)

  • Example: Tall (T) ร— Short (t) Pea Plant
  • F1 Generation: All Tall (Tt)
  • F2 Generation: 3 Tall : 1 Short

๐ŸŒธ Dihybrid Cross (Two Traits)

  • Example: Yellow Round (YYRR) ร— Green Wrinkled (yyrr)
  • F2 Ratio: 9:3:3:1

๐Ÿ”น Types of Inheritance

1๏ธโƒฃ Incomplete Dominance โ€“ Neither allele is completely dominant.

  • Example: Red (RR) ร— White (rr) โ†’ Pink (Rr) in Snapdragon flower.
    2๏ธโƒฃ Co-dominance โ€“ Both alleles express equally.
  • Example: Blood Group AB (IAIB).
    3๏ธโƒฃ Multiple Alleles โ€“ More than two alleles for a gene.
  • Example: ABO Blood Group (IA, IB, i).
    4๏ธโƒฃ Polygenic Inheritance โ€“ Multiple genes control a single trait.
  • Example: Human skin colour.

๐Ÿงฌ Chromosomal Basis of Inheritance

  • Genes are located on chromosomes.
  • Morganโ€™s Experiment (Drosophila โ€“ Fruit Fly) proved linkage & recombination.
  • Sex Determination:
    • XX-XY (Humans, Drosophila).
    • ZZ-ZW (Birds, Reptiles).
    • XO Type (Grasshoppers).

๐Ÿงช Mutations & Genetic Disorders

๐Ÿ”ฌ Types of Mutations

1๏ธโƒฃ Point Mutation โ€“ Change in a single base. (Example: Sickle Cell Anaemia).
2๏ธโƒฃ Chromosomal Mutation โ€“ Deletion, duplication, inversion, translocation.

๐Ÿฉบ Genetic Disorders


๐Ÿฆ  PART 2: MOLECULAR BASIS OF INHERITANCE

๐Ÿ“œ DNA Structure & Replication

  • Discovered by Watson & Crick (Double Helix Model).
  • Nucleotides (A, T, G, C) make up DNA.
  • Chargaffโ€™s Rule: A = T, G = C.
  • Replication: Semi-conservative process.

๐Ÿงฌ Central Dogma of Molecular Biology

DNA โ†’ RNA โ†’ Protein
(DNA Transcription โ†’ mRNA โ†’ Translation โ†’ Protein)

๐Ÿงช Gene Expression & Regulation

  • Lac Operon Model explains gene regulation in prokaryotes.
  • Exons (coding regions) & Introns (non-coding regions).

๐ŸŒ PART 3: EVOLUTION

๐Ÿ”น Origin of Life

  • Oparin-Haldane Hypothesis: Life originated from simple molecules in early Earth.
  • Miller-Urey Experiment: Simulated early Earth conditions โ†’ formed organic molecules.

๐Ÿฆด Evidence for Evolution

1๏ธโƒฃ Fossils โ€“ Show progressive changes.
2๏ธโƒฃ Comparative Anatomy โ€“ Homologous & Analogous structures.
3๏ธโƒฃ Embryology โ€“ Similar embryonic development in vertebrates.
4๏ธโƒฃ Molecular Evidence โ€“ DNA & protein similarities.

๐Ÿ”น Theories of Evolution

1๏ธโƒฃ Lamarckโ€™s Theory of Use & Disuse โ€“ Disproven.
2๏ธโƒฃ Darwinโ€™s Natural Selection โ€“ Survival of the fittest.
3๏ธโƒฃ Hardy-Weinberg Principle โ€“ Gene frequency remains constant in a population.

๐Ÿฆ Darwinโ€™s Natural Selection

  • Overproduction: More offspring are produced than can survive.
  • Variation: Individuals show differences.
  • Struggle for Existence: Competition for resources.
  • Survival of the Fittest: Best-adapted organisms survive & reproduce.

๐ŸŒฟ Types of Evolution

1๏ธโƒฃ Convergent Evolution โ€“ Unrelated species evolve similarly. (Example: Wings in bats & birds).
2๏ธโƒฃ Divergent Evolution โ€“ Common ancestors lead to different species. (Example: Darwinโ€™s finches).
3๏ธโƒฃ Adaptive Radiation โ€“ Rapid diversification from a common ancestor.


๐Ÿ“Œ Key points

โœ… Mendelโ€™s Laws explain heredity.
โœ… Chromosomes carry genes; DNA codes for proteins.
โœ… Mutations cause genetic disorders.
โœ… Evolution explains diversity in life forms.
โœ… Natural selection leads to adaptation & survival.


๐ŸŒŸ Genetic Disorders ๐ŸŒŸ

  • ๐Ÿงฌ Cystic Fibrosis:
    • Cause: Mutation in the CFTR gene.
    • Symptoms: Thick mucus, respiratory and digestive problems.
    • Inheritance: Autosomal recessive.
  • ๐Ÿฉธ Sickle Cell Anemia:
    • Cause: Mutation in the HBB gene, causing sickle-shaped red blood cells.
    • Symptoms: Pain, fatigue, and infections.
    • Inheritance: Autosomal recessive.
  • ๐Ÿง  Down Syndrome:
    • Cause: Extra chromosome 21 (trisomy 21).
    • Symptoms: Intellectual disability, distinct features.
    • Inheritance: Mostly spontaneous, but maternal age increases risk.
  • ๐Ÿงฉ Huntingtonโ€™s Disease:
    • Cause: Mutation in the HTT gene.
    • Symptoms: Progressive neurodegeneration, motor issues.
    • Inheritance: Autosomal dominant.
  • โšก Hemophilia:
    • Cause: Lack of clotting factors (Factor VIII or IX).
    • Symptoms: Easy bruising, prolonged bleeding.
    • Inheritance: X-linked recessive.

๐Ÿงฌ Monohybrid Cross ๐Ÿงฌ

Example: Pea Plant Colour

  • Gene: Colour of the flowers (Purple vs White)
  • Alleles:
    • P (Purple, dominant)
    • p (White, recessive)

Parental Cross (P Generation):

  • Cross: Purple x White
  • Genotypes: PP x pp

F1 Generation:

  • All offspring will inherit one P allele and one p allele (Pp), making them purple-flowered (since purple is dominant).

F2 Generation (Crossing F1 individuals):

  • Cross: Pp x Pp
  • Punnett Square:

F2 Generation Ratios:

  • Genotypic ratio: 1 PP : 2 Pp : 1 pp
  • Phenotypic ratio: 3 Purple : 1 White

Leave a Reply

Scroll to Top