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首页> 外文期刊>Journal of vertebrate paleontology >THE MANUS OF TETRACYNODON (THERAPSIDA: THEROCEPHALIA) PROVIDES EVIDENCE FOR SURVIVAL STRATEGIES FOLLOWING THE PERMOTRIASSIC EXTINCTION
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THE MANUS OF TETRACYNODON (THERAPSIDA: THEROCEPHALIA) PROVIDES EVIDENCE FOR SURVIVAL STRATEGIES FOLLOWING THE PERMOTRIASSIC EXTINCTION

机译:Tetracynodon的曼(therapeida:Therocephalia)为渗透灭绝后的存活策略提供了证据

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摘要

We present a comprehensive qualitative and quantitative study of the manus of a new therocephalian specimen referable to Tetracynodon from the Early Triassic of South Africa. We examined 18 specimens, representing at least 12 genera, including basal therocephalians (Lycosuchidae and Scylacosauridae) and eutherocephalians (Akidnognathidae, Whaitsioidea and Baurioidea). A temporal range of 23 million years through the Permo-Triassic (Wordian to Anisian) was surveyed. A principal component analysis of the therocephalian manus indicates that (1) metacarpals II, III, and IV acted as a module of which the medial and lateral elements (metacarpals I and V) were independent from each other; and (2) the proximal carpals, ulnare, and radiale lengths show contrasting variation in their measurements (e.g., groups with longer ulnares tend to have shorter radiales). The manus of Permian and Triassic taxa occupy separate regions in morphospace. This segregation pattern suggests selection for a manus with slender, elongated second to fourth metacarpals during and after the Permo-Triassic mass extinction. We show a heterogeneous condition of the fifth distal carpal bone. Although usually interpreted as fused to the fourth distal carpal or absent, the fifth distal carpal was present as a cartilaginous element in Tetracynodon. Strong and proportionally long unguals in relation to length of digits III and IV, wide and stocky basal phalanges, and short non-ungual phalanges strongly suggest that Tetracynodon was a scratch-digger. This supports the proposition that burrowing was an important behavioral strategy of terrestrial taxa during and after the Permo-Triassic mass extinction.
机译:我们对从南非早期三叠系的Tetracynodon提供了一种综合的定性和定量研究。我们检查了18个标本,代表至少12个属,包括基地骨科(Lycosuchidae和Scylacosauridae)和Eutherocephalians(Akidnognathidae,Whaitsioidea和Baurioidea)。调查了通过Permo-Triassic(Wordian到Anisian)的时间范围为2300万年。 Therocephalian Manus的主要成分分析表明(1)术称为II,III和IV作用作为其中内侧和侧面元素(Metacarpals I和V)彼此独立的模块; (2)近端的腕骨,尺尺,和放射线长度显示其测量的对比变化(例如,具有较长尺尺的群体往往具有较短的辐射)。二叠纪和三叠纪群的曼占据了形态学中的单独区域。这种隔离模式表明在渗透型大规模灭绝期间和之后和之后和之后延长细长的粉末的粉碎片。我们展示了第五个远端腕骨的异质条件。虽然通常被解释为融合到第四个远端腕骨或不存在,但第五个远端腕骨作为四谱荷兰顿的软骨素存在。与数字III和IV的长度,宽和粗量的基础兰炮,以及短暂的非单位蝴蝶开始的强大和成比例的长期暗示TETRACYNODON是划痕挖掘机。这支持洞穴期间和之后隧道灭绝期间和之后是陆地分类群的重要行为策略的主张。

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  • 来源
    《Journal of vertebrate paleontology》 |2018年第4期|共13页
  • 作者单位

    Univ Nacl Tucuman CONICET Inst Biodiversidad Neotrop Crisostomo Alvarez 722 San Miguel De Tucuman Tucuman Argentina;

    Fdn Miguel Lillo CONICET Unidad Ejecutora Lillo Miguel Lillo 251 San Miguel De Tucuman Tucuman Argentina;

    Univ Witten Herdecke Ctr Biomed Educ &

    Res Inst Evolutionary Biol &

    Morphol Fac Hlth Sch Med Alfred Herrhausen Str 50 D-58448 Witten Germany;

    Rhodes Univ Albany Museum 40 Somerset St ZA-6139 Grahamstown South Africa;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 古生物学;
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