The origin and evolution of Cynodontia (Synapsida, Therapsida): Reassessment of the phylogeny and systematics of the earliest members of this clade using 3D-imaging technologies

IF 1.8 4区 医学 Q2 ANATOMY & MORPHOLOGY Anatomical Record-Advances in Integrative Anatomy and Evolutionary Biology Pub Date : 2024-03-05 DOI:10.1002/ar.25394
Luisa C. Pusch, Christian F. Kammerer, Jörg Fröbisch
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Abstract

The origin of cynodonts, the group ancestral to and including mammals, is one of the major outstanding problems in therapsid evolution. One of the most troubling aspects of the cynodont fossil record is the lengthy Permian ghost lineage between the latest possible divergence from its sister group Therocephalia and the first appearance of definitive cynodonts in the late Permian. The absence of cynodonts and dominance of therocephalians in middle Permian strata has led some workers to argue that cynodonts evolved from within therocephalians, rendering the latter paraphyletic, but more recent analyses support the reciprocal monophyly of Cynodontia and Therocephalia. Furthermore, although a fundamental dichotomy in the derived subclade Eucynodontia is well-supported in cynodont phylogeny, the relationships of more stemward cynodonts from the late Permian and Early Triassic are unresolved. Here, we provide a re-evaluation of the phylogeny of Eutheriodontia (Cynodontia + Therocephalia) and an assessment of character evolution within the group. Using computed tomographic data derived from extensive sampling of the earliest known (late Permian and Early Triassic) cynodonts and selected exemplars of therocephalians and later (Middle Triassic onwards) cynodonts, we describe novel aspects of the endocranial anatomy of these animals. These data were incorporated into a new phylogenetic data set including a comprehensive sample of early cynodonts. Our phylogenetic analyses support some results previously recovered by other authors, but recover therocephalians as paraphyletic with regards to cynodonts, with cynodonts and eutherocephalians forming a clade to the exclusion of the “basal therocephalian” families Lycosuchidae and Scylacosauridae. Though both conservatism and homoplasy mark the endocranial anatomy of early non-mammalian cynodonts, we were able to identify several new endocranial synapomorphies for eutheriodont subclades and recovered generally better-supported topologies than previous analyses using primarily external craniodental characters.

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鞘翅目(Synapsida,Therapsida)的起源与演化:利用三维成像技术重新评估该支系最早成员的系统发育和系统学。
犬齿兽类是哺乳动物的祖先,包括哺乳动物在内,犬齿兽类的起源是兽脚类进化中悬而未决的主要问题之一。犬齿目化石记录中最令人不安的一点是,从最近一次可能与其姊妹类 Therocephalia 的分化到二叠纪晚期首次出现明确的犬齿目动物之间存在着漫长的二叠纪幽灵谱系。在二叠纪中期的地层中,犬齿龙的缺失和巨头龙的优势导致一些学者认为犬齿龙是从巨头龙内部演化而来的,从而使后者成为旁系,但最近的分析支持犬齿龙和巨头龙互为单系。此外,尽管在犬齿目系统发育中,派生亚支系Eucynodontia的基本二分法得到了很好的支持,但二叠纪晚期和三叠纪早期更多的犬齿目动物的关系仍未得到解决。在这里,我们对 Eutheriodontia(犬齿龙科 + Therocephalia)的系统发生进行了重新评估,并对该类群内部的特征演化进行了评估。我们利用对已知最早的(二叠纪晚期和三叠纪早期)犬齿兽和选定的长头兽以及晚期(三叠纪中期以后)犬齿兽样本进行广泛取样所获得的计算机断层扫描数据,描述了这些动物颅内解剖学的新方面。这些数据被纳入一个新的系统发育数据集,其中包括早期犬齿兽的综合样本。我们的系统发育分析支持了其他作者之前得出的一些结果,但发现有头类与无头类是并列关系,有头类和无头类组成一个支系,将 "基干有头类 "的狼龙科和镰刀龙科排除在外。虽然早期非哺乳动物犬齿龙的颅内解剖结构既保守又同形,但我们还是为无齿龙亚支系鉴定出了几个新的颅内同形体,并且与以前主要使用外部颅齿特征进行的分析相比,我们发现的拓扑结构普遍得到了更好的支持。
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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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