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Dissecting The Genetic Architecture Of F _1 Hybrid Sterility In House Mice

机译:解剖家鼠F _1杂交不育的遗传结构

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Hybrid sterility as a postzygotic reproductive isolation mechanism has been studied for over 80 years, yet the first identifications of hybrid sterility genes in Drosophila and mouse are quite recent. To study the genetic architecture of F 1 hybrid sterility between young subspecies of house mouse Mus m. domesticus and M. m. musculus, we conducted QTL analysis of a backcross between inbred strains representing these two subspecies and probed the role of individual chromosomes in hybrid sterility using the intersubspecific chromosome substitution strains. We provide direct evidence that the asymmetry in male infertility between reciprocal crosses is conferred by the middle region of M. m. musculus Chr X, thus excluding other potential candidates such as Y, imprinted genes, and mitochondrial DNA. QTL analysis identified strong hybrid sterility loci on Chr 17 and Chr X and predicted a set of interchangeable autosomal loci, a subset of which is sufficient to activate the Dobzhansky-Muller incompatibility of the strong loci. Overall, our results indicate the oligogenic nature of F 1 hybrid sterility, which should be amenable to reconstruction by proper combination of chromosome substitution strains. Such a prefabricated model system should help to uncover the gene networks and molecular mechanisms underlying hybrid sterility.
机译:杂种不育作为合子后生殖分离机制的研究已有80多年了,但果蝇和小鼠中杂种不育基因的首次鉴定是最近的。为了研究家鼠Mus m。的年轻亚种之间F 1杂交不育的遗传结构。 domesticus和M. m。在小家鼠中,我们对代表这两个亚种的近交菌株之间的回交进行了QTL分析,并使用亚种间染色体替代菌株探讨了个体染色体在杂交不育中的作用。我们提供直接的证据表明,相互交配之间男性不育的不对称性是由M.m的中间区域赋予的。鼠Chr X,因此排除了其他可能的候选物,例如Y,印迹基因和线粒体DNA。 QTL分析确定了Chr 17和Chr X上的强杂种不育位点,并预测了一组可互换的常染色体位点,其中一个子集足以激活强位点的Dobzhansky-Muller不相容性。总的来说,我们的结果表明F 1杂种不育的寡聚性,应该通过适当组合染色体替代菌株进行重建。这种预制的模型系统应有助于揭示杂种不育背后的基因网络和分子机制。

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