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海鳄亚目和恐鳄科(鳄形超目)肩带的功能与系统发育信号

Functional and phylogenetic signals in the pectoral girdle of Thalattosuchia and Dyrosauridae (Crocodylomorpha).

作者信息

Scavezzoni Isaure, Johnson Michela M, Jouve Stéphane, Fischer Valentin

机构信息

Faculty of Sciences Ringgold Standard Institution-Geology Allée du Six Aout 14, University of Liege, Liege, Belgium.

Staatliches Museum für Naturkunde Stuttgart Ringgold Standard Institution-Paläontologie Rosenstein 1-3, Stuttgart, Germany.

出版信息

Anat Rec (Hoboken). 2025 Feb;308(2):412-573. doi: 10.1002/ar.25596. Epub 2024 Nov 25.

Abstract

Crocodylomorphs have colonized various environments from fully terrestrial to fully aquatic, making it an important clade among archosaurs. A remarkable example of the rich past diversity of Crocodylomorpha Hay, 1930 is the marine colonization undergone by several crocodylomorph lineages, particularly Thalattosuchia Fraas, 1901 during the Early Jurassic-Early Cretaceous, and Dyrosauridae de Stefano, 1903 during the Late Cretaceous-Early Eocene. Thalattosuchia represents the most impressive and singular marine radiation among Crocodylomorpha, occupying various ecological niches, before enigmatically disappearing in the Cretaceous. Dyrosauridae, on the other hand, is known for surviving the end-Cretaceous mass extinction in abundance but subsequently vanished. The evolutionary path undertaken by crocodylomorphs into the aquatic environments and the reasons for their disappearance outside marine extinction events during the Mesozoic remains a mystery. Despite a well-preserved fossil record, attention has primarily centered on craniodental adaptations, overlooking the swimming-related adaptations recorded in the postcranial skeleton. This research primarily involves a comprehensive examination of the pectoral girdle of the most representative members of Thalattosuchia and Dyrosauridae, highlighting their evolutionary trajectories over time. Additionally, this work aims to test the phylogenetic signal residing in the postcranial anatomy of Crocodylomorpha. As such, the most recent and complete Crocodylomorpha phylogenetic dataset has been repurposed: 42 new postcranial characters have been added and several others have been revised to address our phylogenetic question. We stress that postcranial anatomy constitutes an important tool supply to better understand the relations of extinct crocodyliforms, but also offers insights on their development, ecology, and biomechanics.

摘要

鳄形超目动物已经在从完全陆地到完全水生的各种环境中栖息,使其成为主龙类中一个重要的分支。1930年,海伊所描述的鳄形目丰富的过去多样性的一个显著例子是,几个鳄形超目谱系进行了海洋栖息,特别是在早侏罗世-早白垩世期间的海鳄亚目(1901年,弗拉斯所命名),以及在晚白垩世-早始新世期间的森林鳄科(1903年,德·斯特凡诺所命名)。海鳄亚目代表了鳄形超目中最令人印象深刻和独特的海洋辐射,占据了各种生态位,然后在白垩纪神秘地消失了。另一方面,森林鳄科以在白垩纪末大灭绝中大量幸存但随后消失而闻名。中生代期间,鳄形超目动物进入水生环境的进化路径以及它们在海洋灭绝事件之外消失的原因仍然是个谜。尽管有保存完好的化石记录,但注意力主要集中在颅骨牙齿的适应性上,而忽略了后颅骨骼中记录的与游泳相关的适应性。这项研究主要涉及对海鳄亚目和森林鳄科最具代表性成员的肩带进行全面检查,突出它们随时间的进化轨迹。此外,这项工作旨在测试鳄形超目后颅解剖结构中的系统发育信号。因此,最新和完整的鳄形超目系统发育数据集被重新利用:增加了42个新的后颅特征,其他几个特征也进行了修订,以解决我们的系统发育问题。我们强调,后颅解剖结构是一个重要的工具,有助于更好地理解已灭绝鳄形类动物的关系,也能为它们的发育、生态和生物力学提供见解。

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