Evolution

Biology · Class 12

Simulation · Biology · Class 12

Hardy-Weinberg: from allele frequency to genotypes

From the lesson Mutation and the Hardy-Weinberg principle in Evolution. Change the values and watch what happens.

The idea behind it

NCERT §6.6, §6.7

  • Where does variation come from, and how does speciation occur? Mendel had described inherited 'factors', but Darwin either ignored this or said nothing.
  • In the first decade of the twentieth century, Hugo de Vries, working on evening primrose, brought out the idea of mutation: a large difference arising suddenly in a population.
  • De Vries held that mutation, not the small heritable variations Darwin described, causes evolution. Mutations are random and directionless; Darwin's variations are small and directional.
  • For Darwin evolution was gradual; de Vries thought mutation caused speciation in a single large step, which he called saltation. Later, population genetics clarified the picture.
  • Hardy-Weinberg principle: allele frequencies in a population are stable and constant from generation to generation. The gene pool (all the genes and their alleles in a population) stays constant; this is genetic equilibrium.
  • The allele frequencies add up to 1. In a diploid, p is the frequency of allele A and q that of allele a, so p + q = 1.
  • The chance that A appears on both chromosomes is p × p, so AA individuals have frequency p²; aa has q² and Aa has 2pq.
  • So p² + 2pq + q² = 1, the binomial expansion of (p + q)².
  • If the measured frequencies differ from these expected values, the difference and its direction show the extent of evolutionary change. A change in allele frequencies, that is a disturbance of Hardy-Weinberg equilibrium, is read as evolution.
Take the whole lessonMutation and the Hardy-Weinberg principle, with the notes, the story, a mind map, common mistakes and exam questions.Open

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