首页> 外文期刊>Limnology and oceanography, methods >New material of the Late Cretaceous marine turtle Ctenochelys acris Zangerl, 1953 and a phylogenetic reassessment of the 'toxochelyid'-grade taxa
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New material of the Late Cretaceous marine turtle Ctenochelys acris Zangerl, 1953 and a phylogenetic reassessment of the 'toxochelyid'-grade taxa

机译:晚餐海龟的新材料Ctenochices acrias Zangerl,1953年和玉米岛级分类群的系统发育重新评估

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摘要

Late Cretaceous marine turtles formerly referred to the family Toxochelyidae represent perhaps the earliest members of the clade including extant marine species of cryptodire (Chelonioidea). Though more pelagically specialized marine taxa such as Protostegidae (i.e. Archelon, Desmatochelys) predate the first occurrence of any known toxochelyid' species, phylogenetic analyses of modern and fossil Testudines have shown that the protostegids may be a separate radiation of stem cryptodires only distantly related to modern marine turtles. This hypothesis has since been supported by ancillary evidence from the stratigraphic record and has been argued from a perspective of rampant homoplasy. This information brings into question our understanding of chelonioid evolution with regard to their previously assumed monophyly, and supports the placement of toxochelyids' as perhaps the earliest definitive members of total group Chelonioidea (Pan-Chelonioidea). However, many toxochelyids' are known from partial holotypes, preventing accurate species diagnosis and precluding these species from character-based phylogenetic analyses. A poorly known member of this clade, Ctenochelys acris, is herein redescribed based on several nearly complete specimens from the early Campanian Mooreville Chalk of Alabama. Ctenochelys acris is characterized by large, dorsolaterally oriented orbits, significant contributions of the palatines to the secondary palate, a broad maxillary triturating surface, and almost equilaterally pentagonal posterior peripherals. This redescription not only identifies previously unknown apomorphies of Ctenochelys spp. but also provides an opportunity to examine the toxochelyids' within a global phylogenetic context. A constraint tree reflecting the recognized molecular topology for extant Testudines is used as a backbone and the resulting phylogeny is then placed within a chronostratigraphic framework in an effort to present a scenario that reconciles anatomical, temporal and phylogenomic patterns for marine turtles. This analysis supports the placement of protostegids outside of Chelonioidea as marine eucryptodirans and establishes Ctenochelys spp. as perhaps some of the earliest representatives of Pan-Cheloniidae.
机译:晚白垩世海龟以前称为玉米育岛的玉米龟代表了包括当地的Cryptodire(Cheloniodea)的船长的最早成员。虽然诸如抗原素(即archelon,Desmatochelys)的近骨种专业的海运征集预测了任何已知的若干毒素的物种的第一次出现,但是现代和化石睾丸的系统发育分析表明,抗辐射体可以是茎密封件的单独辐射仅与其远方相关现代海龟。此假设是由地层记录的辅助证据支持的,并从猖獗的同性膜的角度争论。这些信息提出了我们对先前假定的印制演变的理解,并支持托管的放置',尽管最早的Chelonioidea(Pan-Chelonioidea)的最终成员。然而,许多托管中已知部分全能,防止精确的物种诊断并从基于性质的系统发育分析中排除这些物种。本文中已知的,CtenoChelys acrias的知名成员在此根据阿拉巴马州早期的Campanian Mooreville Chalk粉笔的几个几乎完整的标本来重新分析。 Ctenochecys acris的特征在于大型,背板面向轨道,腭对二次口感的显着贡献,宽的上颌修整表面,以及几乎等方向前沿外周。这种重新评估不仅识别了先前CtenoChelys SPP的未知主任。但还提供了在全局系统发育背景下检查稻草的机会。反映用于备注睾丸的识别的分子拓扑的约束树用作骨架,然后将得到的系统发生在计时框架内,以努力提出与海龟的解剖学,时间和文学组织模式调和的场景。该分析支持在Chelonioidea之外安置辐射剂作为海洋Eucryptodirans并建立了CtenoChelys SPP。也许是潘教士最早的代表。

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