The frequency of genotypes in the population of children with the
RR = 0.64 2Rr = 0.32 rr = 0.04
and frequency of genotypes in the progeny. Show that the frequency of alleles in children, the frequency of alleles R = 0.8 r = 0.2
, that is flowering in the child population still has a frequency of genotypes. And frequency of alleles in a population of parents. Or it can be said that the gene pool of a population in a state of equilibrium. Hardy - Weinberg
from samples of red flowers. White and mentioned it. The color of the flowers is genetically controlled by two genes, alleles are R and r is the equation. Hardy - Weinberg Thus
requiring p is the frequency of alleles R = 0.8
Q is the frequency of alleles r = 0.2 and p + q = 1, that is, the sum frequency of alleles of genes of the population is. equal to 1
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