QUESTION IMAGE
Question
colors observed in that population. the rock pocket mouse population in carrizozo is isolated from the populations in arizona. table 1 presents the genotypic data from sampled mice from all seven locations. table 1. mc1r genotypes of rock pocket mice at seven collection sites
| state | collection site | mc1r genotype | to colle | ||
|---|---|---|---|---|---|
| arizona | christmas pass | 0 | 0 | 6 | |
| arizona | tule mountains | 0 | 5 | 80 | |
| arizona | west | 6 | 1 | 0 | |
| arizona | mid | 3 | 2 | 0 | |
| arizona | east | 35 | 7 | 3 | |
| arizona | oneill hills | 9 | 34 | 34 | |
| new mexico | carrizozo | 0 | 0 | 9 |
5 mark for review which of the following is closest to the frequency of the mc1r d allele in the tule mountain population?
a 0.03
b 0.06
c 0.94
d 0.97
Step1: Calculate total number of alleles
First, find the total number of mice in the Tule Mountain population. From the table, \( DD = 0 \), \( Dd = 5 \), \( dd = 80 \). Total mice \( = 0 + 5 + 80 = 85 \). Each mouse has 2 alleles, so total alleles \( = 85 \times 2 = 170 \).
Step2: Calculate number of D alleles
For \( DD \) (0 mice), each contributes 2 D alleles: \( 0 \times 2 = 0 \). For \( Dd \) (5 mice), each contributes 1 D allele: \( 5 \times 1 = 5 \). So total D alleles \( = 0 + 5 = 5 \).
Step3: Calculate allele frequency
Allele frequency of D is \( \frac{\text{Number of D alleles}}{\text{Total number of alleles}} = \frac{5}{170} \approx 0.029 \approx 0.03 \).
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A. 0.03