The human MN blood group is determined by two codominant alleles, M and N. The following data were obtained from five human populations: E4. Genotype Frequencies (%)* Population Place MM MN NN Inuit East Greenland 83.5 15.6 0.9 Navajo Indians New Mexico 84.5 14.4 1.1 Finns Karajala 45.7 43.1 11.2 Moscow 39.9 44.0 16.1 Russians Aborigines Queensland 2.4 30.4 67.2 A. Calculate the allele frequencies in these five populations. Answer B. Which populations appear to be in Hardy-Weinberg equilibrium? Answer C. Which populations do you think have experienced significant intermixing due to migration? Answer

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The human MN blood group is determined by two codominant alleles, M and N. The
following data were obtained from five human populations:
E4.
Genotype Frequencies (%)*
Population
Place
MM
MN
NN
Inuit
East Greenland
83.5
15.6
0.9
Navajo Indians
New Mexico
84.5
14.4
1.1
Finns
Karajala
45.7
43.1
11.2
Moscow
39.9
44.0
16.1
Russians
Aborigines
Queensland
2.4
30.4
67.2
A. Calculate the allele frequencies in these five populations. Answer
B. Which populations appear to be in Hardy-Weinberg equilibrium? Answer
C. Which populations do you think have experienced significant intermixing due to migration? Answer
Transcribed Image Text:The human MN blood group is determined by two codominant alleles, M and N. The following data were obtained from five human populations: E4. Genotype Frequencies (%)* Population Place MM MN NN Inuit East Greenland 83.5 15.6 0.9 Navajo Indians New Mexico 84.5 14.4 1.1 Finns Karajala 45.7 43.1 11.2 Moscow 39.9 44.0 16.1 Russians Aborigines Queensland 2.4 30.4 67.2 A. Calculate the allele frequencies in these five populations. Answer B. Which populations appear to be in Hardy-Weinberg equilibrium? Answer C. Which populations do you think have experienced significant intermixing due to migration? Answer
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