Cranial anatomy and phylogenetic affinities of Bolosaurus major, with new information on the unique bolosaurid feeding apparatus and evolution of the impedance-matching ear.

IF 1.8 4区 医学 Q2 ANATOMY & MORPHOLOGY Anatomical Record-Advances in Integrative Anatomy and Evolutionary Biology Pub Date : 2024-07-28 DOI:10.1002/ar.25546
Kelsey M Jenkins, William Foster, James G Napoli, Dalton L Meyer, Gabriel S Bever, Bhart-Anjan S Bhullar
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Abstract

Resolving the phylogenetic relationships of early amniotes, in particular stem reptiles, remains a difficult problem. Three-dimensional morphological analysis of well-preserved stem-reptile specimens can reveal important anatomical data and clarify regions of phylogeny. Here, we present the first thorough description of the unusual early Permian stem reptile Bolosaurus major, including the first comprehensive description of a bolosaurid braincase. We describe previously obscured details of the palate, allowing for insight into bolosaurid feeding mechanics. Aspects of the rostrum, palate, mandible, and neurocranium suggest that B. major had a particularly strong bite. We additionally found B. major has a surprisingly slender stapes, similar to that of the middle Permian stem reptile Macroleter poezicus, which may suggest enhanced hearing abilities compared to other Paleozoic amniotes (e.g., captorhinids). We incorporated our new anatomical information into a large phylogenetic matrix (150 OTUs, 590 characters) to explore the relationship of Bolosauridae among stem reptiles. Our analyses generally recovered a paraphyletic "Parareptilia," and found Bolosauridae to diverge after Captorhinidae + Araeoscelidia. We also included B. major within a smaller matrix (10 OTUs, 27 characters) designed to explore the interrelationships of Bolosauridae and found all species of Bolosaurus to be monophyletic. While reptile relationships still require further investigation, our phylogeny suggests repeated evolution of impedance-matching ears in Paleozoic stem reptiles.

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大博龙的头颅解剖和系统发育亲缘关系,以及关于独特的博龙类进食装置和阻抗匹配耳进化的新信息。
解决早期羊膜动物,特别是茎爬行动物的系统发育关系仍然是一个难题。对保存完好的茎爬行动物标本进行三维形态分析,可以揭示重要的解剖学数据,澄清系统发育的区域。在这里,我们首次全面描述了不寻常的早二叠世茎爬行动物大博龙,包括首次全面描述了博龙类的脑壳。我们描述了以前不为人知的上颚细节,从而可以深入了解波龙类的进食机制。喙、上颚、下颚和神经颅的各个方面都表明,大博龙的咬合力特别强。此外,我们还发现大鼻龙的镫骨出奇地细长,与二叠纪中期的有茎爬行动物Macroleter poezicus的镫骨相似,这可能表明大鼻龙的听觉能力比其他古生代羊膜动物(如擒龙类)更强。我们将新的解剖学信息纳入了一个大型系统发生矩阵(150个OTUs,590个特征),以探讨波龙科在茎类爬行动物中的关系。我们的分析普遍认为波龙科是 "副爬行纲"(Parareptilia)的一个分支,并发现波龙科的分化是在帽龙科 + Araeoscelidia 之后。我们还将B. major纳入了一个较小的矩阵(10个OTUs,27个特征),旨在探讨波龙科的相互关系,结果发现波龙科的所有物种都是单系的。虽然爬行动物之间的关系还需要进一步研究,但我们的系统发生表明,古生代茎型爬行动物的阻抗匹配耳在不断进化。
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来源期刊
CiteScore
4.80
自引率
15.00%
发文量
266
审稿时长
4 months
期刊介绍: The Anatomical Record
期刊最新文献
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