🧬 Principles of Inheritance & Variation
Genetics investigates the molecular and statistical rules governing heredity (transmission of traits across generations) and variation (phenotypic differences among individuals of the same species).
1. 📜 Gregor Mendel's Laws of Inheritance
Gregor Johann Mendel conducted hybridization experiments on the Garden Pea (Pisum sativum, 1856–1863) tracking 7 pairs of contrasting traits:
| Trait | Dominant Allele | Recessive Allele | Chromosome Location |
|---|---|---|---|
| Stem Height | Tall ( | Dwarf ( | 4 |
| Flower Position | Axial ( | Terminal ( | 4 |
| Pod Shape | Inflated ( | Constricted ( | 4 |
| Pod Color | Green ( | Yellow ( | 5 |
| Seed Shape | Round ( | Wrinkled ( | 7 |
| Seed Color | Yellow ( | Green ( | 1 |
| Flower Color | Violet ( | White ( | 1 |
1.1 Mendel's Fundamental Postulates
- Law of Segregation (Purity of Gametes): Alleles of a gene separate during gametogenesis without blending, such that each gamete receives only one allele. Universally valid with NO exceptions.
- Law of Independent Assortment: When two pairs of traits are combined in a hybrid, segregation of one pair of characters is independent of the other pair. (Applies only to genes located on different chromosomes or far apart on the same chromosome).
2. 🔀 Non-Mendelian Inheritance Patterns
POST-MENDELIAN GENETICS
│
┌───────────────────────────┼───────────────────────────┐
▼ ▼ ▼
[INCOMPLETE DOMINANCE] [CODOMINANCE] [MULTIPLE ALLELES]
├── Snap-dragon / Mirabilis ├── AB Blood Group (IA IB) ├── ABO Locus (IA, IB, i)
├── Heterozygote is blend ├── Both alleles expressed ├── 3 Alleles in population
└── F2 Ratio: 1:2:1 (P & G) └── F2 Ratio: 1:2:1 (P & G) └── Produces 6 Genotypes| Genetic Pattern | Characteristic Mechanism | Classic Example | ||
|---|---|---|---|---|
| Incomplete Dominance | Neither allele is fully dominant; intermediate phenotype | Antirrhinum majus (Snapdragon flower color: Red | ||
| Codominance | Both alleles express equally in heterozygote | Human ABO Blood Group ( | ||
| Multiple Allelism | Human ABO Blood System ( | 4 Phenotypes (A, B, AB, O) | 6 Genotypes ( | |
| Pleiotropy | Single gene influences multiple phenotypic traits | Phenylketonuria (PKU): Mutation in Phenylalanine Hydroxylase causes mental retardation, hair reduction, and hypopigmentation | Variable | Variable |
| Polygenic Inheritance | Quantitative traits controlled by multiple additive genes | Human Skin Color (Davenport: | Bell-shaped Gaussian curve |
3. 🔬 Chromosomal Theory of Inheritance & Morgan's Linkage
Proposed by Walter Sutton and Theodor Boveri (1902) and experimentally validated by Thomas Hunt Morgan (1910) using the fruit fly (Drosophila melanogaster):
3.1 Why Drosophila was Selected:
- Short life cycle (
). - Clear sexual dimorphism (females larger with ovipositor).
- Easily grown on synthetic cornmeal medium in laboratory bottles.
- High yield of progeny from a single mating and numerous hereditary variations visible under low-power microscopes.
3.2 Linkage vs Recombination
- Linkage: Physical association of genes on the same chromosome. Complete linkage preserves parental combinations.
- Recombination: Generation of non-parental gene combinations via crossing over in Pachytene.
- Alfred Sturtevant's Theorem:
4. 🌳 Pedigree Analysis & Genetic Disorders
HUMAN GENETIC DISORDERS
│
┌───────────────────────────┴───────────────────────────┐
▼ ▼
[MENDELIAN DISORDERS] [CHROMOSOMAL DISORDERS]
├── Autosomal Recessive: Thalassemia, Sickle-Cell, PKU ├── Aneuploidy (2n ± 1):
├── Autosomal Dominant: Myotonic Dystrophy, Huntington │ ├── Down Syndrome (Trisomy 21: 47,XX/XY)
├── X-Linked Recessive: Hemophilia, Color Blindness │ ├── Klinefelter Syndrome (47,XXY)
└── X-Linked Dominant: Hypophosphatemic Rickets │ └── Turner Syndrome (45,X0)
└── Polyploidy: 3n, 4n (Common in plants)4.1 Pedigree Decision Logic
- Is every affected child supported by affected parents?
- YES
Likely Dominant. - NO (Skips generations)
Likely Recessive.
- YES
- Are affected individuals predominantly male?
- YES (Affected male born to carrier mother; no male-to-male transmission)
X-Linked Recessive (e.g., Hemophilia, Red-Green Color Blindness). - NO (Equal male:female distribution)
Autosomal.
- YES (Affected male born to carrier mother; no male-to-male transmission)