The human MN blood type is determined by two codominant alleles (labeled LM and LN). Homozygotes LMLM. have M blood group, heterozygotes LMLN- have MN blood group and homozygotes LNLN- have N blood group. The frequency of LM in a population on an Arctic island is 0.65 (value of p). Please compare these three cases and complete them with the requested genotype frequency values (use as many decimals as needed) Case 1 Case 2 Case 3 The inbreeding coefficient for this population is 0.1, but no evolutionary forces are acting on this locus Frequency of M blood group = Random mating takes place in this population and no evolutionary forces are acting on this locus Frequency of M blood group = Frequency of MN blood group = Frequency of N blood group = The inbreeding coefficient for this population is 0.05, but no evolutionary forces are acting on this locus Frequency of M blood group = Frequency of MN blood group = Frequency of N blood group = Frequency of MN blood group = Frequency of N blood group = c) Briefly describe the differences in the values calculated between the three cases and propose reasons for those differences

Human Anatomy & Physiology (11th Edition)
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The human MN blood type is determined by two codominant alleles (labeled LM and LN). Homozygotes LMLM. have M blood group, heterozygotes LMLN. have MN blood group and homozygotes LNLN. have N blood
group. The frequency of LM in a population on an Arctic island is 0.65 (value of p).
Please compare these three cases and complete them with the requested genotype frequency values (use as many decimals as needed)
Case 1
Case 2
Case 3
The inbreeding coefficient for this
population is 0.1, but no evolutionary
forces are acting on this locus
Frequency of M blood group =
Random mating takes place in this
population and no evolutionary forces
are acting on this locus
Frequency of M blood group =
Frequency of MN blood group =
Frequency of N blood group =
The inbreeding coefficient for this
population is 0.05, but no evolutionary
forces are acting on this locus
Frequency of M blood group =
Frequency of MN blood group =
Frequency of N blood group =
Frequency of MN blood group =
Frequency of N blood group =
c) Briefly describe the differences in the values calculated between the three cases and propose reasons for those differences
Transcribed Image Text:The human MN blood type is determined by two codominant alleles (labeled LM and LN). Homozygotes LMLM. have M blood group, heterozygotes LMLN. have MN blood group and homozygotes LNLN. have N blood group. The frequency of LM in a population on an Arctic island is 0.65 (value of p). Please compare these three cases and complete them with the requested genotype frequency values (use as many decimals as needed) Case 1 Case 2 Case 3 The inbreeding coefficient for this population is 0.1, but no evolutionary forces are acting on this locus Frequency of M blood group = Random mating takes place in this population and no evolutionary forces are acting on this locus Frequency of M blood group = Frequency of MN blood group = Frequency of N blood group = The inbreeding coefficient for this population is 0.05, but no evolutionary forces are acting on this locus Frequency of M blood group = Frequency of MN blood group = Frequency of N blood group = Frequency of MN blood group = Frequency of N blood group = c) Briefly describe the differences in the values calculated between the three cases and propose reasons for those differences
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