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Q.What are complementary genes? Explain with the help of an example. (1+2=3)

Meghalaya MboseMBOSE Meghalaya Intermediate Board 2019Subjective· 3mImportance★★★★★
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Complementary genes are a case of gene interaction in which two genes at different loci must both contribute a functional (dominant) product for a trait to be expressed — if either gene is homozygous recessive, the trait fails to appear, producing a modified 9:7 dihybrid ratio instead of the usual 9:3:3:1.

What are complementary genes?

Complementary genes are two non-allelic (independently segregating) genes that interact such that the dominant allele of each gene, acting together (i.e. both dominant alleles must be present simultaneously in the same individual), is required to produce a particular phenotype. If only one of the two dominant alleles is present (or neither), the normal phenotype fails to appear and an alternative (usually the "absence"/recessive-type) phenotype results instead.

Example: flower colour in sweet pea (Lathyrus odoratus)

Flower colour in sweet pea is controlled by two genes, C and P, each with a dominant and a recessive allele:

  • Gene C (dominant) produces a colourless chromogen precursor.
  • Gene P (dominant) produces an enzyme that converts the chromogen into purple pigment.

Only when both dominant alleles (CC and PP) are present together (C_P_C\_P\_) is purple pigment actually produced; if either gene is homozygous recessive (ccP_ccP\_, C_ppC\_pp, or ccppccpp), no pigment is formed and the flower is white.

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