Q.The phenotypic ratio of complementary genes :
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Start your 14-day free trial to unlock the full solution →Complementary gene interaction gives a modified dihybrid ratio of 9:7 because both dominant alleles are needed together to produce the trait.
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In a normal dihybrid cross with independent assortment and no gene interaction, selfing AaBb x AaBb gives the classic 9:3:3:1 ratio across four phenotypic classes. Complementary genes are a case of non-allelic (intergenic) gene interaction where two genes on different loci jointly control a SINGLE trait, and the dominant phenotype appears only when at least one dominant allele of EACH gene is present together (i.e., genotype A_B_).
All the other three classes -- A_bb, aaB_, and aabb -- fail to produce the dominant phenotype because one or both required dominant alleles are missing, and they are phenotypically indistinguishable from one another (all show the same recessive/alternate phenotype). So the classic 9:3:3:1 ratio collapses into just two classes:
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