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The genetic basis of reproductive isolation in house mice: Studies of a European hybrid zone.

机译:家鼠生殖分离的遗传基础:欧洲杂交区的研究。

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摘要

A complete understanding of the speciation process requires elucidation of the underlying genetic details. Considerable empirical and theoretical research has revealed two important patterns that characterize the genetic basis of reproductive isolation. First, reproductive isolation is usually caused by incompatible substitutions at different, interacting loci. Second, the locations of genes contributing to reproductive isolation are biased toward the X chromosome. These observations suggest that reproductive barriers between young species are frequently due to disrupted interactions involving genes on the X chromosome. This idea motivates a detailed study of introgression for X-linked loci across a European hybrid zone between two species of house mice, Mus domesticus and M. musculus (Appendix A). Allele frequency patterns at 13 molecular markers with known chromosomal positions identify one region with clearly reduced introgression. This piece of the X chromosome may contain genes that confer reproductive barriers between M. domesticus and M. musculus. Expected patterns of hybrid zone introgression for incompatible substitutions between the X chromosome and the autosomes are also investigated using computer simulations (Appendix B). The results indicate that both the locations and shapes of allele frequency clines are distorted by selection against hybrids, with effects related to the dominance of the interacting alleles and inheritance patterns of the X chromosome (hemizygosity). Additionally, loci closely linked to the targets of selection show only weak reductions in introgression, suggesting that neutral gene flow is not strongly impeded by selection against hybrids. Finally, the mouse genome sequence is used to compare patterns of hybrid zone introgression to several genomic attributes (Appendix C). No clear correlates of introgression emerge, suggesting that reproductive isolation between M. domesticus and M. musculus may involve a small number of genes with large effects. Using location in the X-linked region of reduced introgression, a high rate of protein evolution, and restricted expression in the male germ line as criteria, seven candidate genes for reproductive isolation are identified. These results underscore the value of studying natural patterns of introgression in model genetic organisms for understanding the genetic basis of speciation.
机译:对物种形成过程的完全理解需要阐明潜在的遗传细节。大量的经验和理论研究揭示了两种重要的模式,这些模式表征了生殖隔离的遗传基础。首先,生殖隔离通常是由不同的相互作用位点处的不相容取代引起的。其次,有助于生殖分离的基因位置偏向X染色体。这些观察结果表明,年轻物种之间的生殖障碍通常是由于涉及X染色体上基因的相互作用被破坏所致。这个想法激发了对X连锁基因座在欧洲混合区中的两种家鼠,家蝇和小家鼠之间的渗入的详细研究(附录A)。在13个具有已知染色体位置的分子标记上的等位基因频率模式可以识别出一个明显减少了渗入的区域。这条X染色体可能包含赋予家蝇支原体和小家鼠支原体之间生殖屏障的基因。还使用计算机模拟研究了X染色体与常染色体之间不相容取代的杂合区渗入的预期模式(附录B)。结果表明,通过选择杂种,等位基因频率谱系的位置和形状都会扭曲,其影响与相互作用等位基因的优势和X染色体的遗传模式(混杂)有关。此外,与选择目标密切相关的基因座仅显示出渗入程度的微弱降低,这表明中性基因流动不会受到针对杂种的选择的强烈阻碍。最后,小鼠基因组序列用于比较杂交区渗入模式与几种基因组属性(附录C)。没有明显的基因渗入相关性出现,表明家蝇支原体和小家鼠支原体之间的生殖隔离可能涉及少数具有大影响的基因。以基因渗入减少,蛋白质进化的高速率和雄性种系中受限制的表达的X连锁区域中的位置为标准,确定了七个用于生殖分离的候选基因。这些结果强调了研究模型遗传生物中自然渗入模式对于理解物种形成的遗传基础的价值。

著录项

  • 作者

    Payseur, Bret Allen.;

  • 作者单位

    The University of Arizona.;

  • 授予单位 The University of Arizona.;
  • 学科 Biology Genetics.;Biology Zoology.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 160 p.
  • 总页数 160
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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