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Q.Explain briefly Hardy-Weinberg equilibrium.

Jammu Kashmir JkboseJKBOSE Class 12 Annual Regular Examination 2023Subjective· 3mImportance★★★★★
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The Hardy-Weinberg principle states that in an ideal, undisturbed population, allele frequencies remain constant generation after generation, expressed algebraically as p² + 2pq + q² = 1.

The Hardy-Weinberg principle (independently proposed by G.H. Hardy and W. Weinberg, 1908) states that allele frequencies and genotype frequencies in a population are stable and remain constant from generation to generation, i.e., the population is said to be in 'genetic equilibrium', as long as certain conditions are met.

Mathematical expression:

If a gene has two alleles, A (dominant) with frequency p and a (recessive) with frequency q, such that p + q = 1, then the expected genotype frequencies in the population are given by the binomial expansion:

p² + 2pq + q² = 1

where:

  • p² = frequency of homozygous dominant genotype (AA)
  • 2pq = frequency of heterozygous genotype (Aa)
  • q² = frequency of homozygous recessive genotype (aa)

Conditions required for the equilibrium to hold (a population must be free from all of these disturbing/evolutionary forces):

  • No mutation.
  • Random mating (no mate selection/assortative mating).
  • No natural selection (all genotypes have equal survival/reproductive fitness).
  • Very large population size (no genetic drift).
  • No gene flow/migration into or out of the population. …

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