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首页> 外文期刊>Molecular phylogenetics and evolution >Transoceanic Stepping-stones between Cretaceous waterfalls? The enigmatic biogeography of pantropical itOocyclus/it cascade beetles
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Transoceanic Stepping-stones between Cretaceous waterfalls? The enigmatic biogeography of pantropical itOocyclus/it cascade beetles

机译:白垩纪瀑布之间的跨界步进石头? 垂直的瓣膜和卵yclus& / it 级联甲虫

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摘要

Beetles have colonized freshwater habitats multiple times throughout their evolutionary history. Some of these aquatic lineages are associated exclusively with waterfall-like habitats, often with modified morphologies to cope with their unusual way of life. The historical biogeography of such cascade beetle lineages has been shown to strongly reflect ancient tectonic events. We focus on the pantropical genus Oocyclus of which species dwell in waterfalls and associated habitats. We infer the first molecular phylogeny of Oocyclus using a dataset of seven gene fragments. We recover a well resolved phylogenetic hypothesis, with a monophyletic Oocyclus divided in three genetically well-differentiated subclades which correspond to geography. Comparative dating analyses across Hydrophilidae based on ten fossil calibrations recover a Cretaceous origin for the genus. Based on a comprehensive suite of ancestral range analyses, we suggest a unique pattern with an origin in Southeast Asia followed by the successive colonization of India and the Neotropics via transoceanic stepping-stone dispersal. Diversification rate analyses support a scenario in which old Oocyclus lineages diversified slowly with a homogeneous rate regime. Waterfall beetle radiations are ancient and remarkably track Earth's paleogeological history, shedding light on intricate patterns of macroevolution.
机译:甲虫在他们的进化历史中多次殖民般的淡水栖息地。这些水生谱系中的一些是完全有瀑布样的栖息地,通常具有修改的形态来应对他们不寻常的生活方式。已经表明,这种级联甲虫谱系的历史生物地理凝视强烈反映了古代构造事件。我们专注于羽毛属盎司卵yclus,其在瀑布和相关栖息地的物种。我们使用七种基因片段的数据集推断卵yclus的第一分子系统。我们回收了一个良好的系统发育假设,用单焦卵稠物分为三个遗传良好分化的亚克条,对应于地理学。基于十个化石校准的疏水层对比较的比较约会分析回收了属的白垩纪来源。基于全面的祖传范围分析套件,我们建议了东南亚的起源的独特模式,随后通过跨迁移的踩踏石分散进行印度和新生儿的连续殖民。多元化率分析支持一个方案,其中旧卵yclus谱系与同质速率制度缓慢多样化。瀑布甲虫辐射是古代而且追踪地球的古地理史,脱落在宏观调整的复杂模式上。

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