首页> 美国卫生研究院文献>Genome Biology and Evolution >Modeling the Multiple Facets of Speciation-with-Gene-Flow toward Inferring the Divergence History of Lake Whitefish Species Pairs (Coregonus clupeaformis)
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Modeling the Multiple Facets of Speciation-with-Gene-Flow toward Inferring the Divergence History of Lake Whitefish Species Pairs (Coregonus clupeaformis)

机译:模拟多物种与基因流的面以推断白鲑湖物种对(Coregonus clupeaformis)的发散历史

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摘要

Parallel divergence across replicated species pairs occurring in similar environmental contrasts may arise through distinct evolutionary scenarios. Deciphering whether such parallelism actually reflects repeated parallel divergence driven by divergent selection or a single divergence event with subsequent gene flow needs to be ascertained. Reconstructing historical gene flow is therefore of fundamental interest to understand how demography and selection jointly shaped genomic divergence during speciation. Here, we use an extended modeling framework to explore the multiple facets of speciation-with-gene-flow with demo-genetic divergence models that capture both temporal and genomic variation in effective population size and migration rate. We investigate the divergence history of replicate sympatric species pairs of Lake Whitefish (normal benthic and dwarf limnetic) characterized by variable degrees of ecological divergence and reproductive isolation. Genome-wide SNPs were used to document the extent of genetic differentiation in each species pair, and 26 divergence models were fitted and compared with the unfolded joint allele frequency spectrum of each pair. We found evidence that a recent (circa 3,000–4,000 generations) asymmetrical secondary contact between expanding postglacial populations has accompanied Whitefish diversification. Our results suggest that heterogeneous genomic differentiation has emerged through the combined effects of linked selection generating variable rates of lineage sorting across the genome during geographical isolation, and heterogeneous introgression eroding divergence at different rates across the genome upon secondary contact. This study thus provides a new retrospective insight into the historical demographic and selective processes that shaped a continuum of divergence associated with ecological speciation.
机译:在相似的环境对比中,跨复制物种对的平行发散可能通过不同的进化场景而出现。需要确定这种并行性实际上是否反映了由发散选择驱动的重复并行发散或单个发散事件以及随后的基因流。因此,重建历史基因流对于了解人口统计和选择如何在物种形成过程中共同塑造基因组差异具有重大意义。在这里,我们使用扩展的建模框架,利用演示遗传散度模型探索物种形成与基因流的多个方面,这些模型捕获了有效种群数量和迁移率的时间和基因组变异。我们调查了以生态变异和生殖隔离程度不同为特征的白鲑湖(正常底栖生物和侏儒边缘生物)复制同伴物种对的历史。全基因组单核苷酸多态性用于记录每个物种对的遗传分化程度,并拟合了26个发散模型并将其与每一对的未折叠联合等位基因频谱进行比较。我们发现有证据表明,不断扩大的冰河后种群之间最近(约3,000至4,000代)的不对称次生接触伴随着白鱼的多样化。我们的结果表明,通过连锁选择的组合效应已经出现了异质基因组分化,这些选择在地理隔离期间跨基因组产生了可变的谱系排序速率,并且在二次接触后异质渗入以不同的速率侵蚀了整个基因组。因此,本研究为历史人口和选择性过程提供了新的回顾性见解,这些历史过程和选择性过程形成了与生态物种形成有关的连续性差异。

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