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The Genetic Basis of Reproductive Isolation Between Two Species of House Mice

机译:两种家鼠之间生殖分离的遗传基础

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摘要

Determining the genetic basis of reproductive isolation is a fundamental goal in evolutionary biology. Intrinsic reproductive isolation often arises due to epistasis between divergent interacting genes. The rapid evolution of hybrid male sterility is known to have several causes, including the exposure of recessive X-linked incompatibilities in males and the rapid evolution of male reproductive traits. Despite these insights, little is known about the genetics of reproductive isolation during the early stages of speciation. This deficiency inspired parallel studies on the molecular evolution of male reproduction in house mice and the genetic basis of hybrid male sterility between two mouse species, Mus domesticus and M. musculus. Evolutionary analysis of 946 genes showed that the intensity of positive selection varies across sperm development and acts primarily on phenotypes that develop late in spermatogenesis (Appendix A). Several reciprocal crosses between wild-derived strains of M. musculus and M. domesticus were used to examine F1 hybrid male sterility (Appendix B). These crosses revealed hybrid male sterility linked to the M. musculus X chromosome and a novel sterility polymorphism within M. musculus. A large introgression experiment was used to further dissect the genetic basis of X-linked incompatibilities between M. musculus and M. domesticus (Appendix C). Introgression of the M. musculus X chromosome into a M. domesticus genetic background produced male sterility and involved a minimum of four factors. No sterility factors were uncovered on the M. domesticus X chromosome. These data demonstrate the complex genetic basis of hybrid sterility in mice and provide numerous X-linked candidate sterility genes. The molecular evolution of five rapidly evolving candidate genes was examined using population and phylogenetic sampling in Mus (Appendix D). Four of these loci showed evidence of positive natural selection. One locus, 4933436I01Rik, showed divergent protein evolution between M. domesticus and M. musculus and was one of a handful of testis-expressed genes within a narrow interval involved in hybrid male sterility. In summary, these data demonstrate that hybrid male sterility has a complex genetic basis between two closely related species of house mice and provide a foundation for the identification of specific mutations that isolate these species.
机译:确定生殖分离的遗传基础是进化生物学的基本目标。内源性生殖隔离通常是由于发散的相互作用基因之间的上位性引起的。已知杂种雄性不育的快速进化有多种原因,包括雄性隐性X连锁不相容性的暴露以及雄性生殖性状的快速进化。尽管有这些见识,但对物种形成早期阶段生殖隔离的遗传学知之甚少。这种缺陷激发了有关家鼠雄性生殖的分子进化以及两种鼠种(家蝇和小家鼠)之间杂交雄性不育的遗传基础的平行研究。对946个基因的进化分析表明,阳性选择的强度随精子发育而变化,并且主要作用于在精子发生后期发展的表型(附录A)。小家鼠和家蝇的野生来源菌株之间的一些相互杂交被用来检验F1杂种雄性不育(附录B)。这些杂交揭示了与小家鼠X染色体相关的杂种雄性不育和小家鼠内的新的不育多态性。进行了大渗入实验,进一步剖析了小家鼠与家蝇之间X连锁不相容性的遗传基础(附录C)。小家鼠X染色体渗入家蝇的遗传背景产生了雄性不育,并涉及至少四个因素。在M. domesticus X染色体上未发现不育因素。这些数据证明了小鼠杂种不育的复杂遗传基础,并提供了许多X连锁候选不育基因。使用种群中的种群和系统发育采样检查了五个快速进化的候选基因的分子进化(附录D)。这些基因座中有四个显示出自然选择积极的证据。一个基因座4933436I01Rik显示了家蝇支原体和小家鼠支原体之间的蛋白质进化不同,并且是少数在杂种雄性不育中间隔很短的睾丸表达基因之一。总之,这些数据表明杂种雄性不育在两个密切相关的家鼠物种之间具有复杂的遗传基础,并为鉴定分离这些物种的特定突变奠定了基础。

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    Good Jeffrey;

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  • 年度 2007
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