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首页> 外文期刊>Paleobiology >Bone histology of Azendohsaurus laaroussii: Implications for the evolution of thermometabolism in Archosauromorpha
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Bone histology of Azendohsaurus laaroussii: Implications for the evolution of thermometabolism in Archosauromorpha

机译:Azendohsaurus的骨质组织学,LAAROUSSII:对拱尾孔的热素质的演变的影响

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This paper is aimed at constraining the phylogenetic frame of the acquisition of endothermy by Archosauromorpha. We analyzed the bone histology of Azendohsaurus laaroussii. Stylopodial and zeugopodial bones show three tissue types: (1) avascular lamellar zonal bone formed at low growth rates; (2) a scaffold of parallel-fibered bone containing either small primary osteons or simple vascular canals; and (3) fibrolamellar bone formed at high growth rates. We used quantitative histology to infer the thermometabolic regime of this taxon. We define endothermy as the presence of any mechanism of nonshivering thermogenesis that increases both body temperature and resting metabolic rate. Thus, estimating the resting metabolic rate of an extinct organism may be a good proxy to infer its thermometabolic regime (endothermy vs. ectothermy). High resting metabolic rates have been shown to be primitive for the clade Prolacerta-Archosauriformes. Therefore, we inferred the resting metabolic rates of A. laaroussii, a sister group of this clade, and of 14 extinct related taxa, using phylogenetic eigenvector maps. All the inferences obtained are included in the range of variation of resting metabolic rates measured in mammals and birds, so we can reasonably assume that all these taxa (including Azendohsaurus) were endotherms. A parsimony optimization of the presence of endothermy on a phylogenetic tree of tetrapods shows that this derived character state was acquired by the last common ancestor of the clade Azendohsaurus-Archosauriformes and that there is a reversion in Crocodylia.
机译:本文旨在约束archosauromorpha收集收集的系统发育框架。我们分析了Zendohsaurus Laaroussii的骨质组织学。型曲线发术和Zeugopodial骨骼显示出三种组织类型:(1)在低生长速率下形成的缺血层层骨; (2)含有小初级骨膜或简单血管运河的平行纤维骨支架; (3)在高生长速率下形成的纤维素骨。我们使用定量组织学来推断出这个分类的热玛格兰制度。我们将吸热定义为存在的任何内部热生成机制,这增加了体温并静置代谢率。因此,估计灭绝的生物体的静止代谢率可能是良好的代理,以推断其蒸馏粒摩性制度(吸热与ectOvermy)。已经显示出高休息的代谢率为CLADE Promacerta-Archosauriformes是原始的。因此,我们推断了休息的A. Laaroussii,这一思考的姐妹组,其中14个灭绝的相关分类群,使用系统发育特征媒体地图。所获得的所有推论包括在哺乳动物和鸟类中测量的静息代谢率的变化范围内,因此我们可以合理地假设所有这些征草(包括氮陶器)都是吸热的。在Tetrapods的系统发育树上过热的存在的分布优化表明,这种衍生的性格状态是由曲折症α-古代的最后一个共同的祖先获取,并且在鳄鱼中存在逆转。

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    《Paleobiology》 |2019年第2期|共14页
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  • 正文语种 eng
  • 中图分类 古生物学;
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