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Formation of a recent hybrid zone offers insight into the geographic puzzle and maintenance of species boundaries in musk turtles

机译:最近的混合带的形成提供了进入地理拼图的洞察力和在麝香龟的物种边界的维护

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Speciation is the result of an accumulation of reproductive barriers between populations, but pinpointing the factors involved is often difficult. However, hybrid zones can form when these barriers are not complete, especially when lineages come into contact in intermediate or modified habitats. We examine a hybrid zone between two closely related riverine turtle species, Sternotherus depressus and S. peltifer, and use dual-digest RAD sequencing to understand how this hybrid zone formed and elucidate genomic patterns of reproductive isolation. First, the geographical extent and timing of formation of the hybrid zone is established to provide context for understanding the role of extrinsic and intrinsic reproductive isolating mechanisms in this system. The strength of selection on taxon-specific contributions to maintenance of the hybrid zone is then inferred using a Bayesian genomic cline model. These analyses identify a role for selection inhibiting introgression in some genomic regions at one end of the hybrid zone and promoting introgression in many loci at the other. When selective pressures necessary to generate outliers to the genomic cline are considered with the geographical and temporal context of this hybrid zone, we conclude that habitat-specific selection probably limits introgression from S. depressus to S. peltifer in the direction of river flow. However, selection is mediating rapid, unidirectional introgression from S. peltifer to S. depressus, which is probably facilitated by anthropogenic habitat alteration. These findings indicate a potentially imminent threat of population-level genomic extinction for an already imperiled species due to ongoing human-caused habitat alteration.
机译:物种是群体之间积累生殖障碍的结果,但精确定位所涉及的因素通常很困难。然而,当这些屏障不完整时,杂交区域可以形成,特别是当谱系在中间或修饰的栖息地接触时。我们在两个紧密相关的河豚种类,睾丸抑制和S.Peltifer之间检查一个混合区域,并使用双消化RAC测序来了解该混合区域的形成和阐明生殖隔离的基因组模式。首先,建立了混合区形成的地理范围和时序,以提供背景,以了解本系统中外本和内在生殖隔离机制的作用。然后使用贝叶斯基因组康兰模型推断出对杂交区维持的分类贡献的特定贡献的强度。这些分析鉴定了在杂交区一端在某些基因组区域中抑制抑制迟发的作用,并在对方的许多基因座中促进血栓增长。当与该杂交区的地理和时间背景下考虑产生基因组癌的异常值所需的选择性压力时,我们得出结论,栖息地的选择可能会限制在河流的方向上的D.S. Depressus到S. Pictifer的迟钝。然而,选择介导从S.Peltifer到S. Depleases的快速,单向迟发,这可能是通过人为栖息地改变而促进的。这些发现表明由于持续的人类造成的栖息地改变,人口级别基因组灭绝的潜在迫在眉睫的种族基因组灭绝威胁。

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