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In eukaryotic cells, genes at different loci can interact to influence traits. In some cases, one gene can mask or modify the effect of another gene. This type of gene interaction is called epistasis.
For example, epistasis appears in rabbit coat color. Several genes affect rabbit pigmentation, including the tyrosinase gene, or TYR, and the tyrosinase-related protein 1 gene, or TYRP1.
The TYR gene corresponds to the classical C or albino locus. This gene helps control an early step in melanin production.
Rabbits that inherit two recessive TYR alleles cannot produce melanin pigment, so their coats appear white. Rabbits carrying at least one functional dominant TYR allele, either homozygous dominant or heterozygous, can produce pigment normally and appear black or brown.
The tyrosinase-related protein 1, or TYRP1 gene, corresponds to the B or brown locus. At this locus, the dominant allele leads to black pigment, while the recessive allele leads to brown, or chocolate-colored, fur.
When considering only these two coat-color genes, TYR and TYRP1, rabbits that are heterozygous at both loci appear black.
When these rabbits mate, some offspring inherit two recessive TYR alleles and develop white fur, regardless of which TYRP1 alleles they inherit, because the recessive TYR genotype completely stops melanin production.
In these rabbits, the homozygous recessive TYR genotype stops melanin production, so the TYRP1 gene cannot affect the visible coat color.
This is an example of recessive epistasis, where the recessive TYR genotype masks the effect of the black or brown pigment controlled by the TYRP1 gene.
In this type of cross, the offspring may show a phenotypic ratio of 9 black to 3 brown to 4 white. This ratio is characteristic of recessive epistasis.
In addition to multiple alleles at the same locus influencing traits, numerous genes or alleles at different locations may interact and influence phen…
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