11. In a dihybrid cross, we consider two traits at the same time. Suppose in a species of fish, long tail (T) is dominant over short tail (t) and blue body color (B) is dominant over green body color (b) and the genes for these two traits lie on two different chromosomes. Suppose we want to predict the offspring that would result from crossing a father who is heterozygous to both traits and a mother who is homozygous recessive for both traits. Genotype of the father: Genotype of the mother: Phenotype of the father; Phenotype of the mother:

Human Anatomy & Physiology (11th Edition)
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Author:Elaine N. Marieb, Katja N. Hoehn
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Chapter1: The Human Body: An Orientation
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11. In a dihybrid cross, we consider two traits at the same time. Suppose in a species of fish, long
tail (T) is dominant over short tail (t) and blue body color (B) is dominant over green body
color (b) and the genes for these two traits lie on two different chromosomes.
Suppose we want to predict the offspring that would result from crossing a father who is
heterozygous to both traits and a mother who is homozygous recessive for both traits.
Genotype of the father:
Genotype of the mother:
Phenotype of the father;
Phenotype of the mother:
Transcribed Image Text:11. In a dihybrid cross, we consider two traits at the same time. Suppose in a species of fish, long tail (T) is dominant over short tail (t) and blue body color (B) is dominant over green body color (b) and the genes for these two traits lie on two different chromosomes. Suppose we want to predict the offspring that would result from crossing a father who is heterozygous to both traits and a mother who is homozygous recessive for both traits. Genotype of the father: Genotype of the mother: Phenotype of the father; Phenotype of the mother:
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