Department of Geosciences, Eberhard Karls Universität Tübingen, Hölderlinstraße 12, 72074 Tübingen, Germany.
School of Biological Sciences, Flinders University, GPO Box 2100, South Australia 5001, Australia.
Biol Lett. 2022 Feb;18(2):20210603. doi: 10.1098/rsbl.2021.0603. Epub 2022 Feb 9.
The use of molecular data for living groups is vital for interpreting fossils, especially when morphology-only analyses retrieve problematic phylogenies for living forms. These topological discrepancies impact on the inferred phylogenetic position of many fossil taxa. In Crocodylia, morphology-based phylogenetic inferences differ fundamentally in placing basal to all other living forms, whereas molecular data consistently unite it with crocodylids. The Cenomanian was recently described as the oldest crown crocodilian, with affinities to , based on morphology-only analyses, thus representing a potentially important new molecular clock calibration Here, we performed analyses incorporating DNA data into these morphological datasets, using scaffold and supermatrix (total evidence) approaches, in order to evaluate the position of basal crocodylians, including . Our analyses incorporating DNA data robustly recovered outside Crocodylia (as well as thoracosaurs, planocraniids and spp.), questioning the status of as crown crocodilian and any future use as a node calibration in molecular clock studies. Finally, we discuss the impact of ambiguous fossil calibration and how, with the increasing size of phylogenomic datasets, the molecular scaffold might be an efficient (though imperfect) approximation of more rigorous but demanding supermatrix analyses.
利用分子数据来研究现生物种对于解释化石至关重要,尤其是当仅基于形态学的分析对现生物种的系统发育树产生问题时。这些拓扑差异会影响到许多化石分类单元的推断系统发育位置。在鳄形目动物中,基于形态学的系统发育推断在将基础部分置于所有其他现生物种之前存在根本差异,而分子数据则一致将其与鳄形超目动物联系在一起。最近,根据仅基于形态学的分析,将白垩纪的 描述为最古老的冠鳄类,与 有亲缘关系,因此代表了一个潜在的重要新分子钟校准点。在这里,我们进行了分析,将 DNA 数据纳入这些形态数据集,使用支架和超级矩阵(总证据)方法,以评估基础鳄形目动物的位置,包括 。我们纳入 DNA 数据的分析有力地恢复了 不在鳄形目动物之外(以及胸鳄类、平颅鳄科和 种),这对 作为冠鳄类的地位以及未来作为分子钟研究中节点校准的任何用途提出了质疑。最后,我们讨论了化石校准的模糊性的影响,以及随着系统发育基因组数据集的不断增大,分子支架如何成为更严格但要求更高的超级矩阵分析的有效(尽管不完美)近似。