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Caenorhabditis remanei 的全球种群遗传结构揭示了初期物种形成。

Global population genetic structure of Caenorhabditis remanei reveals incipient speciation.

机构信息

Department of Ecology and Evolutionary Biology, Centre for the Analysis of Genome Evolution and Function, University of Toronto, Toronto, Ontario, Canada.

出版信息

Genetics. 2012 Aug;191(4):1257-69. doi: 10.1534/genetics.112.140418. Epub 2012 May 29.

Abstract

Mating system transitions dramatically alter the evolutionary trajectories of genomes that can be revealed by contrasts of species with disparate modes of reproduction. For such transitions in Caenorhabditis nematodes, some major causes of genome variation in selfing species have been discerned. And yet, we have only limited understanding of species-wide population genetic processes for their outcrossing relatives, which represent the reproductive state of the progenitors of selfing species. Multilocus-multipopulation sequence polymorphism data provide a powerful means to uncover the historical demography and evolutionary processes that shape genomes. Here we survey nucleotide polymorphism across the X chromosome for three populations of the outcrossing nematode Caenorhabditis remanei and demonstrate its divergence from a fourth population describing a closely related new species from China, C. sp. 23. We find high genetic variation globally and within each local population sample. Despite geographic barriers and moderate genetic differentiation between Europe and North America, considerable gene flow connects C. remanei populations. We discovered C. sp. 23 while investigating C. remanei, observing strong genetic differentiation characteristic of reproductive isolation that was confirmed by substantial F2 hybrid breakdown in interspecific crosses. That C. sp. 23 represents a distinct biological species provides a cautionary example of how standard practice can fail for mating tests of species identity in this group. This species pair permits full application of divergence population genetic methods to obligately outcrossing species of Caenorhabditis and also presents a new focus for interrogation of the genetics and evolution of speciation with the Caenorhabditis model system.

摘要

交配系统的转变极大地改变了基因组的进化轨迹,通过对比具有不同繁殖方式的物种可以揭示这一点。对于秀丽隐杆线虫中的这种转变,已经发现了一些导致自交物种基因组变异的主要原因。然而,对于它们的异交亲属的全种群遗传过程,我们只有有限的了解,这些亲属代表了自交物种祖先的繁殖状态。多位点多群体序列多态性数据为揭示塑造基因组的历史人口统计学和进化过程提供了有力手段。在这里,我们调查了异交线虫秀丽隐杆线虫的三个种群的 X 染色体上的核苷酸多态性,并证明其与来自中国的亲缘关系密切的新物种 C. sp. 23 的第四个种群的分歧。我们发现全球和每个本地种群样本中都存在高度遗传变异。尽管存在地理障碍和欧洲与北美的中度遗传分化,但 C. remanei 种群之间存在可观的基因流。我们在研究 C. remanei 时发现了 C. sp. 23,观察到了强烈的遗传分化,这是生殖隔离的特征,并通过种间杂交中的大量 F2 杂种衰退得到了证实。C. sp. 23 代表一个独特的生物物种,这为在该组中进行物种身份交配测试的标准实践可能失败提供了一个警示性示例。这一对物种允许对秀丽隐杆线虫中必需异交的物种充分应用分歧种群遗传方法,并且也为使用秀丽隐杆线虫模型系统研究遗传与进化提供了一个新的焦点。

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