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Linkage and Segregation Analysis of Black and Brindle Coat Color in Domestic Dogs

机译:家犬黑毛和斑点毛颜色的连锁和偏析

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摘要

Mutations of pigment type switching have provided basic insight into melanocortin physiology and evolutionary adaptation. In all vertebrates that have been studied to date, two key genes, Agouti and Melanocortin 1 receptor (Mc1r), encode a ligand-receptor system that controls the switch between synthesis of red–yellow pheomelanin vs. black–brown eumelanin. However, in domestic dogs, historical studies based on pedigree and segregation analysis have suggested that the pigment type-switching system is more complicated and fundamentally different from other mammals. Using a genomewide linkage scan on a Labrador × greyhound cross segregating for black, yellow, and brindle coat colors, we demonstrate that pigment type switching is controlled by an additional gene, the K locus. Our results reveal three alleles with a dominance order of black (KB) > brindle (kbr) > yellow (ky), whose genetic map position on dog chromosome 16 is distinct from the predicted location of other pigmentation genes. Interaction studies reveal that Mc1r is epistatic to variation at Agouti or K and that the epistatic relationship between Agouti and K depends on the alleles being tested. These findings suggest a molecular model for a new component of the melanocortin signaling pathway and reveal how coat-color patterns and pigmentary diversity have been shaped by recent selection.
机译:色素类型转换的突变为黑皮质素生理学和进化适应提供了基本见识。迄今为止,在所有已研究的脊椎动物中,两个关键基因Agouti和Melanocortin 1受体(Mc1r)编码一个配体-受体系统,该系统控制着红黄色苏富兰素与黑棕色Eumelanin的合成之间的转换。然而,在家犬中,基于血统和偏析分析的历史研究表明,色素类型转换系统比其他哺乳动物更为复杂,并且在根本上与其他哺乳动物不同。使用拉布拉多×灵缇交叉分离的全基因组连锁扫描,以发现黑色,黄色和斑驳的外套颜色,我们证明了颜料类型的转换受另一个基因K位点控制。我们的结果揭示了三个等位基因,其优势顺序为黑色(KB)>斑纹(kbr)>黄色(ky),其在狗16号染色体上的遗传图谱位置与其他色素沉着基因的预测位置不同。相互作用研究表明,Mc1r对Agouti或K的变异具有上位性,而Agouti和K之间的上位性关系取决于所测试的等位基因。这些发现提示了一种针对黑皮质素信号传导途径新成分的分子模型,并揭示了最近的选择如何改变了外套颜色的图案和颜料的多样性。

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