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Q.Explain Hardy-Weinberg's principle, with the help of Punnet square.

Maharashtra MsbshseMaharashtra HSC (MSBSHSE) Board 2020Subjective· 2mImportance★★★★★
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Hardy-Weinberg's principle states that allele and genotype frequencies in a large, randomly-mating population remain constant (in equilibrium) generation after generation in the absence of evolutionary forces (mutatio...

Hardy-Weinberg's principle predicts that, absent evolutionary pressures, a population's gene-pool composition stays constant, expressed by the equation p² + 2pq + q² = 1.

Consider a gene with two alleles, A (frequency p) and a (frequency q), where p + q = 1. If mating is entirely random, we can represent it with a Punnett square using gametes in the proportion pA and qa on each axis: crossing (pA + qa) × (pA + qa) gives offspring genotypes AA with frequency p × p = p², Aa with frequency (p × q) + (q × p) = 2pq, and aa with frequency q × q = q². Since these are the only possible genotypes, p² + 2pq + q² = 1. Hardy-Weinberg's principle states that, in an idealised large population with random mating and no mutation, selection, migration or genetic drift, these genotype and allele frequencies remain unchanged across generations — the population is said to be in genetic equilibrium …

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