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Calibrating the tree of vipers under the fossilized birth-death model

机译:在化石的出生死亡模型下校准Vipers树

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Scaling evolutionary trees to time is essential for understanding the origins of clades. Recently developed methods allow including the entire fossil record known for the group of interest and eliminated the need for specifying prior distributions for node ages. Here we apply the fossilized birth-death (FBD) approach to reconstruct the diversification timeline of the viperines (subfamily Viperinae). Viperinae are an Old World snake subfamily comprising 102 species from 13 genera. The fossil record of vipers is fairly rich and well assignable to clades due to the unique vertebral and fang morphology. We use an unprecedented sampling of 83 modern species and 13 genetic markers in combination with 197 fossils representing 28 extinct taxa to reconstruct a time-calibrated phylogeny of the Viperinae. Our results suggest a late Eocene-early Oligocene origin with several diversification events following soon after the group’s establishment. The age estimates inferred with the FBD model correspond to those from previous studies that were based on node dating but FBD provides notably narrower credible intervals around the node ages. Viperines comprise two African and an Eurasian clade, but the ancestral origin of the subfamily is ambiguous. The most parsimonious scenarios require two transoceanic dispersals over the Tethys Sea during the Oligocene.
机译:缩放进化树时间对于了解落后的起源至关重要。最近开发的方法允许包括为感兴趣组而闻名的整个化石记录,并消除了指定节点年龄的先前分布的需求。在这里,我们应用化石出生死亡(FBD)方法来重建Viperines(亚家族Viperinae)的多样化时间表。 Viperinae是一个旧的世界蛇亚家族,包括来自13个属的102种。由于独特的椎体和方形态,VoSil的Vipers的化石记录相当丰富,可分配到林类。我们使用前所未有的83种现代物种和13个遗传标记的抽样,与197种化石组合,代表28种灭绝的征集,以重建viperina的时间校准的系统发生。我们的结果表明,本集团成立后不久之后,初期ocigende Oligocene Orguls在很快之后。使用FBD模型推断的年龄估计值对应于基于节点约会的先前研究的年龄估计,但FBD在节点年龄周围提供了显着较窄的可靠间隔。 Viperines包括两名非洲和欧亚人的思工,但亚家族的祖先起源是暧昧的。在寡核苷期间,最具典范的情景需要两个在Thethys海上的传球分散。

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