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Geometric morphometric analysis of skull morphology reveals loss of phylogenetic signal at the generic level in extant lagomorphs (Mammalia

机译:头骨形态的几何形态计量学分析揭示了现存的lagomorphs(哺乳动物)在一般水平上的系统发育信号的损失

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The intergeneric phylogeny of Lagomorpha had been controversial for a long time before a robust phylogeny was reconstructed based on seven nuclear and mitochondrial DNA sequences. However, skull morphology of several endemic genera remained poorly understood. The morphology of supraorbital processes in Lagomorpha is normally used as a diagnostic characteristic in taxonomy, but whether shape change of this structure parallels its genetic divergence has not been investigated. In this study, we conducted a comparative analysis of the skull morphology of all 12 extant genera using geometric morphometrics. These results indicated that no significant phylogenetic signal is observed in the shape change of the dorsal and ventral views of the cranium as well as in the lateral view of the mandible. The supraorbital processes also show insignificant phylogenetic signal in shape change. Similarly, mapping the centroid size (averaged by genus) of these datasets onto the phylogeny also showed insignificant phylogenetic signal. Aside from homoplasy caused by convergent evolution of skull shape, the massive extinction of lagomorphs after the late Miocene is proposed as one of the main causes for diluting phylogenetic signals in their morphological evolution. Acknowledging the loss of phylogenetic signals in skull shape and supraorbital processes of extant genera sheds new light on the long-standing difficulties for understanding higher-level systematics in Lagomorpha.
机译:在基于七个核和线粒体DNA序列重建稳固的系统发育之前,Lagomorpha的属间系统发育一直存在争议。然而,几个地方属的头骨形态仍然知之甚少。 Lagomorpha的眶上突形态通常被用作分类学的诊断特征,但是尚未研究这种结构的形状变化是否与其遗传差异平行。在这项研究中,我们使用几何形态计量学对所有12个现存属的头骨形态进行了比较分析。这些结果表明,在颅骨的背侧和腹侧的形状变化以及下颌骨的侧视图中均未观察到明显的系统发育信号。眶上突也显示出微不足道的系统发育信号。同样,将这些数据集的质心大小(按属平均)映射到系统发育上也显示出不重要的系统发育信号。除了颅骨形状的趋同进化引起的同质异体外,中新世晚期后的泻湖大灭绝被认为是稀释其系统进化信号的主要原因之一。认识到颅骨形状中的系统发育信号的丢失以及现存属的眶上突,为理解Lagomorpha的高级系统学长期存在的困难提供了新的思路。

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