Q.The phenotypic ratio in complementary gene interaction is
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Start your 14-day free trial to unlock the full solution →Complementary gene interaction is a case of gene interaction in which two dominant genes at different loci must both be present to produce one phenotype; any combination lacking either dominant allele gives the alternative phenotype, converting the standard dihybrid 9:3:3:1 ratio into 9:7.
What is complementary gene interaction
Some traits (e.g. flower colour in sweet pea) depend on two genes, each with its own dominant and recessive allele, that act together (are 'complementary' to each other) to produce a single character. Neither dominant allele alone can produce the full/pigmented phenotype — both are required together.
Working out the ratio
Consider two genes, A/a and B/b, assorting independently. In a dihybrid cross AaBb × AaBb, the underlying genotypic classes are the usual 9 A_B_ : 3 A_bb : 3 aaB_ : 1 aabb.
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