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Two pulses of diversification across the Isthmus of Tehuantepec in a montane Mexican bird fauna

机译:在墨西哥山地鸟类中穿越蒂万特佩克地峡的两个脉冲

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摘要

Understanding the evolutionary history of the species in a particular region provides insights into how that fauna was formed. Of particular interest to biogeographers is examining the impact a geographical barrier had in generating temporal genetic diversity among codistributed species. We examined the impact a major New World barrier, the Isthmus of Tehuantepec (IT) in southern Mexico, had on a regional bird fauna. Specifically, genetic data from 10 montane-forest bird taxa were analysed using approximate Bayesian computation (ABC) to test the hypothesis of simultaneous intraspecific diversification at the IT. Because effective population size (Ne) has the greatest impact on coalescent times, thereby affecting tests of divergence among codistributed taxa, we chose priors for both current and ancestral Ne using empirical estimates of theta. The ABC method detected two discrete diversification events. Subsequent analysis with the number of diversification events constrained to two suggests that four taxa diverged in an older event, with the remaining six diverging more recently. Application of a range of mutation rates from 2.0 to 5.0% Myr−1 places both events within the Pleistocene or Late Pliocene, suggesting that fluctuations in montane habitat induced by climate cycles and a late Pliocene seaway may have fractured this montane bird fauna. The results presented here suggest this avian fauna responded in a relatively concerted fashion over the last several million years.
机译:了解特定区域内物种的进化历史可提供有关该动物群形成方式的见解。生物地理学家特别感兴趣的是研究地理障碍对在共同分布的物种之间产生时间遗传多样性的影响。我们研究了新世界的主要障碍物,墨西哥南部的特温特佩克地峡(IT)对当地鸟类的影响。具体来说,使用近似贝叶斯计算(ABC)分析了来自10个山地森林鸟类类群的遗传数据,以检验IT部门同时进行种内多样化的假设。由于有效人口规模(Ne)对合并时间的影响最大,从而影响共分布类群之间差异的检验,因此,我们使用theta的经验估计来选择当前Ne和祖先Ne的先验。 ABC方法检测到两个离散的分散事件。随后对多样化事件数量限制为两个的分析表明,在较旧的事件中有四个分类单元发生了分化,而其余六个则在最近发生了变化。应用从2.0%到5.0%Myr −1 的突变率范围,将这两个事件都置于更新世或晚更新世之内,这表明气候周期和上新世晚期海道引起的山地栖息地的波动可能已经破裂。这种山地鸟类动物。此处显示的结果表明,在过去的几百万年中,这种禽类动物以相对一致的方式做出了反应。

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