首页> 外文期刊>Journal of Systematic Palaeontology >Postcranial axial skeleton of Europasaurus holgeri (Dinosauria, Sauropoda) from the Upper Jurassic of Germany: implications for sauropod ontogeny and phylogenetic relationships of basal Macronaria
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Postcranial axial skeleton of Europasaurus holgeri (Dinosauria, Sauropoda) from the Upper Jurassic of Germany: implications for sauropod ontogeny and phylogenetic relationships of basal Macronaria

机译:来自德国上侏罗统的欧罗巴龙的后颅骨骨架:对底栖巨螯虾的蜥脚类动物个体发育和系统发育关系的启示

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摘要

Neosauropods are well represented in the Late Jurassic fossil record, both in Laurasia and Gondwana. Among Macronaria, Europasaurus represents one of the most basal forms of this group. In addition to its systematic importance, Europasaurus is also the first unequivocal dwarf sauropod from which adult and juvenile material is available. Despite the abundance of sauropods in the fossil record, early juvenile specimens are rare, limiting knowledge about sauropod ontogeny. Therefore, the great amount of material of Europasaurus provides an excellent opportunity to improve our knowledge on the early evolution of Macronaria, as well as to shed light on some morphological changes through ontogeny. The postcranial axial skeleton of sauropods is extremely modified with respect to the anatomy observed in its ancestors, the 'prosauropods', proving to be one of the most informative regions of the body. Here we provide a detailed description of the axial skeleton of Europasaurus, including adult and juvenile elements, discussing its systematic and ontogenetic importance. We also analyse the phylogenetic position of Europasaurus through a cladistic analysis using TNT, which retrieves this taxon in a basal position among Camarasauromorpha. Additionally, the presence/absence of discrete characters and the comparison of juvenile elements with adult specimens allowed us to recognize different morphological ontogenetic stages (MOS). Whereas early stages lack derived characters (e.g. spinodiapophyseal lamina and prespinal lamina on dorsal vertebrae), all derived characters (including autapomorphies) are present in late immature specimens. Therefore, while late immature specimens provide the same phylogenetic signal as adult specimens of Europasaurus, more immature stages are recovered in a basal position among sauropods. Finally, we apply the MOS to other maturity criteria (e.g. neurocentral closure, sexual maturity) in a search for a wider definition of maturity.
机译:新蜥脚类在劳拉西亚和冈瓦纳的侏罗纪晚期化石记录中都有很好的表现。在Macronaria中,欧洲龙是该群体中最基础的形式之一。除了其系统重要性外,欧洲龙也是首个可提供成年和幼年材料的明确矮人蜥脚类动物。尽管化石记录中有许多蜥脚类动物,但早期的幼体标本很少见,从而限制了有关蜥脚类动物个体发育的知识。因此,欧洲龙的大量材料提供了一个极好的机会,可以提高我们对Macronaria的早期进化的认识,并通过个体发育揭示一些形态变化。蜥脚类恐龙的颅后轴骨架在其祖先“前脚足纲动物”中观察到的解剖结构已被极大地修改,被证明是人体信息最丰富的区域之一。在这里,我们提供了对欧洲龙的轴向骨骼的详细描述,包括成年和少年元素,并讨论了其系统性和个体发育的重要性。我们还通过使用TNT的分类分析分析了欧洲龙的系统发育位置,该方法在Camarasauromorpha中的基础位置检索了该分类单元。此外,存在/不存在离散字符以及将少年元素与成年标本进行比较,使我们能够识别出不同的形态发育阶段(MOS)。早期阶段缺乏衍生特征(例如背椎骨上的脊神经po突椎板和脊柱前椎板),而所有衍生特征(包括自体形态)都存在于未成熟的晚期标本中。因此,尽管晚期未成熟标本提供与欧洲龙的成人标本相同的系统发生信号,但在蜥脚类动物的基部位置恢复了更多的未成熟阶段。最后,我们将MOS应用于其他成熟度标准(例如神经中枢闭合,性成熟),以寻求更广泛的成熟度定义。

著录项

  • 来源
    《Journal of Systematic Palaeontology》 |2014年第4期|335-387|共53页
  • 作者单位

    Steinmann Institute, Division of Palaeontology, University of Bonn, Nussallee 8, 53115 Bonn, Germany,Consejo Nacional de Investigaciones Cientificas y Tecnicas Museo Paleontologico Egidio Feruglio, Fontana 140, 29100 Trelew, Argentina;

    Steinmann Institute, Division of Palaeontology, University of Bonn, Nussallee 8, 53115 Bonn, Germany;

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  • 正文语种 eng
  • 中图分类
  • 关键词

    Macronaria; ontogeny; maturity; phylogeny; dimorphism; Late Jurassic;

    机译:大紫n;个体发育到期;系统发育二态性侏罗纪晚期;

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