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we calculated pairwise genetic differentiation for each pair of sites as Jost’s D in Genodive ver. Another population (population 2) nearby has the following allele frequencies: Al = 0.7 A4 = 0.2 A5 = 0.1 If there is migration from population 2 into the population above, describe in general how this would change the allele frequencies in the population above. After converting our alleles, the frequency of null alleles was estimated using ML. Derive the Hardy-Weinberg equation for locus A and provide the expected frequencies for each genotype. What are the current frequencies of all alleles? 156. Use the data set below to answer the questions below. If these fitness values remain the same across generations, what will the ultimate allele frequencies be? (3)ġ5. What are the genotype frequencies going to be in the next generation? 12e. What are the current relative fitness values? 12d. What are the current allele frequencies? 12c. What are the current genotype frequencies? 12b. Fill in the values for genotype frequency (P) and relative fitness (w) for each genotype. You are studying the population genetics of a single locus character in beach mice and have obtained the following estimates of genotype numbers and absolute fitness. Is this locus significantly deviating from Hardy-Weinberg equilibrium in this population? Explain. Shown below is a partial table of Chi-square critical values. Calculate the Chi-square value to determine if this population is in Hardy-Weinberg equilibrium. What is the expected number of Aa individuals based on Hardy-Weinberg equilibrium? 12c. Genotype Number of Individuals AA 49 Аа 87 33 aa 12b. Calculate the allele frequency of A and a in the population using data from the table below.
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