Alizadeh Azita, Hong Lewis Z, Kaelin Christopher B, Raudsepp Terje, Manuel Hermogenes, Barsh Gregory S
Department of Genetics, Stanford University, Stanford, CA 94305, USA.
Genetics. 2009 Apr;181(4):1427-36. doi: 10.1534/genetics.108.095018. Epub 2009 Feb 2.
Alternating patches of black and yellow pigment are a ubiquitous feature of mammalian color variation that contributes to camouflage, species recognition, and morphologic diversity. X-linked determinants of this pattern--recognized by variegation in females but not in males--have been described in the domestic cat as Orange, and in the Syrian hamster as Sex-linked yellow (Sly), but are curiously absent from other vertebrate species. Using a comparative genomic approach, we develop molecular markers and a linkage map for the euchromatic region of the Syrian hamster X chromosome that places Sly in a region homologous to the centromere-proximal region of human Xp. Comparison to analogous work carried out for Orange in domestic cats indicates, surprisingly, that the cat and hamster mutations lie in nonhomologous regions of the X chromosome. We also identify the molecular cause of recessively inherited black coat color in hamsters (historically referred to as nonagouti) as a Cys115Tyr mutation in the Agouti gene. Animals doubly mutant for Sly and nonagouti exhibit a Sly phenotype. Our results indicate that Sly represents a melanocortin pathway component that acts similarly to, but is genetically distinct from, Mc1r and that has implications for understanding both the evolutionary history and the mutational mechanisms of pigment-type switching.
黑色和黄色色素交替出现的斑块是哺乳动物毛色变异的普遍特征,有助于伪装、物种识别和形态多样性。这种模式的X连锁决定因素——在雌性中表现为斑驳状,而在雄性中则无此现象——在家猫中被称为橙色基因(Orange),在叙利亚仓鼠中被称为性连锁黄色基因(Sex-linked yellow,Sly),但奇怪的是在其他脊椎动物物种中却不存在。我们采用比较基因组学方法,为叙利亚仓鼠X染色体的常染色质区域开发了分子标记和连锁图谱,将Sly定位在与人Xp着丝粒近端区域同源的区域。令人惊讶的是,与在家猫中对橙色基因所做的类似研究相比,猫和仓鼠的突变位于X染色体的非同源区域。我们还确定了仓鼠中隐性遗传的黑色被毛颜色(历史上称为非刺鼠色)的分子原因是刺鼠基因(Agouti)中的Cys115Tyr突变。Sly和非刺鼠色基因双突变的动物表现出Sly表型。我们的结果表明,Sly代表一种黑皮质素途径成分,其作用与Mc1r相似,但在遗传上与之不同,这对于理解色素类型转换的进化历史和突变机制都具有重要意义。