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Genetic structure and contrasting selection pattern at two major histocompatibility complex genes in wild house mouse populations

机译:野生家鼠群体两个主要组织相容性复合基因的遗传结构和对比选择模式

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摘要

The mammalian major histocompatibility complex (MHC) is a tightly linked cluster of immune genes, and is often thought of as inherited as a unit. This has led to the hope that studying a single MHC gene will reveal patterns of evolution representative of the MHC as a whole. In this study we analyse a 1000-km transect of MHC variation traversing the European house mouse hybrid zone to compare signals of selection and patterns of diversification at two closely linked MHC class II genes, H-2Aa and H-2Eb. We show that although they are 0.01 cM apart (that is, recombination is expected only once in 10 000 meioses), disparate evolutionary patterns were detected. H-2Aa shows higher allelic polymorphism, faster allelic turnover due to higher mutation rates, stronger positive selection at antigen-binding sites and higher population structuring than H-2Eb. H-2Eb alleles are maintained in the gene pool for longer, including over separation of the subspecies, some H-2Eb alleles are positively and others negatively selected and some of the alleles are not expressed. We conclude that studies on MHC genes in wild-living vertebrates can give substantially different results depending on the MHC gene examined and that the level of polymorphism in a related species is a poor criterion for gene choice.
机译:哺乳动物主要组织相容性复合体(MHC)是免疫基因的紧密连接簇,通常被认为是一个单元遗传的基因。这导致了希望,研究单个MHC基因将揭示代表整个MHC的进化模式。在这项研究中,我们分析了穿越欧洲家鼠杂交区的MHC变异的1000公里断面,以比较两个紧密相连的II类MHC基因H-2Aa和H-2Eb的选择信号和多样化模式。我们显示,尽管它们相距0.01 cM(也就是说,预期在10 000个基因组中仅重组一次),但检测到了不同的进化模式。与H-2Eb相比,H-2Aa显示出更高的等位基因多态性,更快的等位基因周转率(归因于更高的突变率),更强的抗原结合位点阳性选择以及更高的种群结构。 H-2Eb等位基因在基因库中的保存时间更长,包括亚种的过度分离,一些H-2Eb等位基因呈阳性,而其他则呈阴性,某些等位基因不表达。我们得出的结论是,对野生生物脊椎动物中的MHC基因进行的研究可能会得出不同的结果,具体取决于所检查的MHC基因,并且相关物种中的多态性水平对于基因选择而言是一个较差的标准。

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