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Comparative Phylogeographic Analyses Illustrate the Complex Evolutionary History of Threatened Cloud Forests of Northern Mesoamerica

机译:比较系统记录分析说明了中美洲北部受威胁的云森林的复杂进化史

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摘要

Comparative phylogeography can elucidate the influence of historical events on current patterns of biodiversity and can identify patterns of co-vicariance among unrelated taxa that span the same geographic areas. Here we analyze temporal and spatial divergence patterns of cloud forest plant and animal species and relate them to the evolutionary history of naturally fragmented cloud forests–among the most threatened vegetation types in northern Mesoamerica. We used comparative phylogeographic analyses to identify patterns of co-vicariance in taxa that share geographic ranges across cloud forest habitats and to elucidate the influence of historical events on current patterns of biodiversity. We document temporal and spatial genetic divergence of 15 species (including seed plants, birds and rodents), and relate them to the evolutionary history of the naturally fragmented cloud forests. We used fossil-calibrated genealogies, coalescent-based divergence time inference, and estimates of gene flow to assess the permeability of putative barriers to gene flow. We also used the hierarchical Approximate Bayesian Computation (HABC) method implemented in the program msBayes to test simultaneous versus non-simultaneous divergence of the cloud forest lineages. Our results show shared phylogeographic breaks that correspond to the Isthmus of Tehuantepec, Los Tuxtlas, and the Chiapas Central Depression, with the Isthmus representing the most frequently shared break among taxa. However, dating analyses suggest that the phylogeographic breaks corresponding to the Isthmus occurred at different times in different taxa. Current divergence patterns are therefore consistent with the hypothesis of broad vicariance across the Isthmus of Tehuantepec derived from different mechanisms operating at different times. This study, coupled with existing data on divergence cloud forest species, indicates that the evolutionary history of contemporary cloud forest lineages is complex and often lineage-specific, and thus difficult to capture in a simple conservation strategy.
机译:比较植物志学可以阐明历史事件对当前生物多样性模式的影响,并可以确定跨越相同地理区域的不相关分类单元之间的共变模式。在这里,我们分析了云雾森林植物和动物物种的时空分布格局,并将它们与自然破碎的云雾森林的演变历史联系在一起,其中包括北部中美洲最受威胁的植被类型。我们使用了比较性的系统地理学分析方法来确定共生模式的共生模式,这些共生模式跨云森林栖息地共享地理范围,并阐明历史事件对当前生物多样性模式的影响。我们记录了15种(包括种子植物,鸟类和啮齿动物)的时间和空间遗传差异,并将它们与自然破碎的云林的进化历史联系起来。我们使用了化石校正的家谱,基于聚结的发散时间推论和基因流的估计值来评估推定的障碍对基因流的渗透性。我们还使用了msBayes程序中实现的分层近似贝叶斯计算(HABC)方法来测试云林谱系的同时发散和非同时发散。我们的结果表明,与特胡安特佩克地峡,洛斯图斯特拉斯和恰帕斯州中部凹陷相对应的共同的植物学断裂,地峡代表了分类群中最常见的断裂。但是,约会分析表明,与地峡相对应的地理断裂发生在不同的分类单元中的不同时间。因此,当前的分歧模式与在蒂瓦安特佩克地峡发生广泛变异的假设是一致的,该假设源自在不同时间运行的不同机制。这项研究,加上有关散布云林物种的现有数据,表明当代云林谱系的进化历史是复杂的,而且通常是特定谱系的,因此很难用简单的保护策略来捕获。

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