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Monday, November 18, 2013

Hardy-Weinburg Equilibrium

Hardy-Weinburg Equilibrium The Hardy-Weinberg theorem states that the frequency of alleles and genetic constitutions in a institution?s gene pool remain constant all over the generations unless acted upon by agents other than sexual recombination. For example, take a people of mice that consists of 1,000 members. A specific allele, albino allele, is recessive within this species. 80% of the community expresses the practice phenotype- brown coloring, while the remaining 20% are albino. 640 members of the population capture the genotype AA, 320 piss Aa, and 40 wipe out aa.
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If all in all random mating were to occur, in that respect would be an 80% run a risk that a gamete would bear the normal allele, A, and a 20% come crossways that the gamete would bear the albino allele, a. The resulting manifestation will display the following genotype ratios: AA will have 64%, Aa 32% (the chance of the offspring having the A allele is 96%), and aa 4%. The offspring have the same genotype ratio as their parents. This example was unrivaled of Hardy-...If you want to get a full essay, order it on our website: OrderCustomPaper.com

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