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天使鲨(扁鲨目,软骨鱼纲)的神经颅形保守进化趋势。

Evolutionary trends of the conserved neurocranium shape in angel sharks (Squatiniformes, Elasmobranchii).

机构信息

Department of Palaeontology, University of Vienna, Althanstraße 14, Geocenter, 1090, Vienna, Austria.

Dipartimento di Scienze Della Terra, Università Degli Studi di Torino, Via Valperga Caluso 35, 10125, Torino, Italy.

出版信息

Sci Rep. 2020 Jul 28;10(1):12582. doi: 10.1038/s41598-020-69525-7.

Abstract

Elasmobranchii (i.e., sharks, skates, and rays) forms one of the most diverse groups of marine predators. With a fossil record extending back into the Devonian, several modifications in their body plan illustrate their body shape diversity through time. The angel sharks, whose fossil record dates back to the Late Jurassic, some 160 Ma, have a dorsoventrally flattened body, similar to skates and rays. Fossil skeletons of this group show that the overall morphology was well established earlier in its history. By examining the skull shape of well-preserved fossil material compared to extant angel sharks using geometric morphometric methods, within a phylogenetic framework, we were able to determine the conservative skull shape among angel sharks with a high degree of integration. The morphospace occupation of extant angel sharks is rather restricted, with extensive overlap. Most of the differences in skull shape are related to their geographic distribution patterns. We found higher levels of disparity in extinct forms, but lower ones in extant species. Since angel sharks display a highly specialized prey capture behaviour, we suggest that the morphological integration and biogeographic processes are the main drivers of their diversity, which might limit their capacity to display higher disparities since their origin.

摘要

软骨鱼纲(即鲨鱼、鳐鱼和魟鱼)形成了海洋捕食者中最多样化的群体之一。它们的化石记录可以追溯到泥盆纪,在这段时间里,它们的身体结构发生了一些变化,展示了它们的身体形状多样性。天使鲨的化石记录可以追溯到 1.6 亿年前的侏罗纪晚期,它们的身体呈背腹扁平状,类似于鳐鱼和魟鱼。该群体的化石骨架表明,其整体形态在其历史早期就已经很好地确立了。通过使用几何形态测量方法,在系统发育框架内,比较保存完好的化石材料和现存天使鲨的头骨形状,我们能够确定天使鲨中具有高度整合性的保守头骨形状。现存天使鲨的形态空间占据相当有限,重叠度很高。大多数头骨形状的差异与它们的地理分布模式有关。我们发现灭绝形式的差异程度更高,但现存物种的差异程度更低。由于天使鲨表现出高度专业化的捕食行为,我们认为形态整合和生物地理过程是它们多样性的主要驱动因素,这可能限制了它们自起源以来展示更高差异的能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d515/7387474/64d7970b536a/41598_2020_69525_Fig1_HTML.jpg

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