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Next-Generation Museomics Disentangles One of the Largest Primate Radiations

机译:下一代Museomics可以解开最大的灵长类动物辐射之一

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摘要

Guenons (tribe Cercopithecini) are one of the most diverse groups of primates. They occupy all of sub-Saharan Africa and show great variation in ecology, behavior, and morphology. This variation led to the description of over 60 species and subspecies. Here, using next-generation DNA sequencing (NGS) in combination with targeted DNA capture, we sequenced 92 mitochondrial genomes from museum-preserved specimens as old as 117 years. We infer evolutionary relationships and estimate divergence times of almost all guenon taxa based on mitochondrial genome sequences. Using this phylogenetic framework, we infer divergence dates and reconstruct ancestral geographic ranges. We conclude that the extraordinary radiation of guenons has been a complex process driven by, among other factors, localized fluctuations of African forest cover. We find incongruences between phylogenetic trees reconstructed from mitochondrial and nuclear DNA sequences, which can be explained by either incomplete lineage sorting or hybridization. Furthermore, having produced the largest mitochondrial DNA data set from museum specimens, we document how NGS technologies can “unlock” museum collections, thereby helping to unravel the tree-of-life. [Museum collection; next-generation DNA sequencing; primate radiation; speciation; target capture.]
机译:Guenons(Cercopithecini部落)是最多样化的灵长类动物之一。它们占领了整个撒哈拉以南非洲,并且在生态,行为和形态上都表现出很大的差异。这种变化导致对60多个物种和亚种的描述。在这里,结合下一代DNA测序(NGS)和靶向DNA捕获,我们从博物馆保存的标本中提取了92个线粒体基因组,这些标本的历史可以追溯到117年。我们推断进化关系,并基于线粒体基因组序列估计几乎所有龙舌兰类群的发散时间。使用这种系统发育框架,我们可以推断出分歧日期并重建祖先的地理范围。我们得出的结论是,除其他因素外,非洲森林覆盖率的局部波动是导致古纳斯异常辐射的一个复杂过程。我们发现线粒体和核DNA序列重建的系统发育树之间的不一致,这可以通过不完整的谱系排序或杂交来解释。此外,我们已经从博物馆样本中获得了最大的线粒体DNA数据集,我们记录了NGS技术如何“解锁”博物馆藏品,从而有助于解开生命之树。 [博物馆收藏;下一代DNA测序灵长类动物辐射;物种目标捕获。]

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