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Molecular paleobiology of early-branching animals: integrating DNA and fossils elucidates the evolutionary history of hexactinellid sponges

机译:早生动物的分子古生物学:DNA和化石的整合阐明了十六碳海绵的进化历史

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摘要

Reconciliation of paleontological and molecular phylogenetic evidence holds great promise for a better understanding of the temporal succession of cladogenesis and character evolution,especially for taxa with a fragmentary fossil record and uncertain classification. In zoology, studies of this kind have largely been restricted to Bilateria. Hexactinellids (glass sponges) readily lend themselves to test such an approach for early-branching (non-bilaterian) animals: they have a long and rich fossil record, but for certain taxa paleontological evidence is still scarce or ambiguous. Furthermore, there is a lack of consensus for taxonomic interpretations, and discrepancies exist between neontological and paleontological classification systems. Using conservative fossil calibration constraints and the largest molecular phylogenetic data set assembled for this group, we infer divergence times of crown-group Hexactinellida in a Bayesian relaxed molecular clock framework. With some notable exceptions, our results are largely congruent with interpretations of the hexactinellid fossil record, but also indicate long periods of undocumented evolution for several groups. This study illustrates the potential of an integrated molecular/paleobiological approach to reconstructing the evolution of challenging groups of organisms.
机译:古生物学和分子系统发育证据的调和具有更好的前景,有助于更好地了解克拉德发生的时间序列和特征演变,特别是对于化石记录不完整和分类不确定的分类单元。在动物学上,这类研究在很大程度上限于Bilateria。六放线虫(玻璃海绵)很容易为早期分支(非双性)动物测试这种方法:它们具有悠久而丰富的化石记录,但对于某些分类,古生物学证据仍然稀少或不明确。此外,在分类学解释上缺乏共识,并且在新生儿学和古生物学分类系统之间存在差异。使用保守的化石校准约束条件和为此组收集的最大分子系统发育数据集,我们推断出贝叶斯轻松分子时钟框架中冠群六子藻的发散时间。除一些显着例外外,我们的结果在很大程度上与对十六碳石化石记录的解释相符,但也表明若干团体的长期无证演变。这项研究说明了整合分子/古生物学方法重建具有挑战性的生物群进化的潜力。

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