Paleohistological inferences of thermometabolic regimes in Notosuchia (Pseudosuchia: Crocodylomorpha) revisited

IF 2.6 2区 地球科学 Q2 BIODIVERSITY CONSERVATION Paleobiology Pub Date : 2022-09-20 DOI:10.1017/pab.2022.28
J. Cubo, P. Aubier, Mathieu G. Faure-Brac, Gaspard Martet, Romain Pellarin, Idriss Pelletan, M. Sena
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引用次数: 6

Abstract

Abstract. Notosuchia is a group of mostly terrestrial crocodyliforms. The presence of a prominent crest overhanging the acetabulum, slender straight-shafted long bones with muscular insertions close to the joints, and a stable knee joint suggests that they had an erect posture. This stance has been proposed to be linked to endothermy, because it is present in mammals and birds and contributes to the efficiency of their respiratory systems. However, a bone paleohistological study unexpectedly suggested that Notosuchia were ectothermic organisms. The thermophysiological status of Notosuchia deserves further analysis, because the methodology of the previous study can be improved. First, it was based on a relationship between red blood cell size and bone vascular canal diameter tested using 14 extant tetrapod species. Here we present evidence for this relationship using a more comprehensive sample of extant tetrapods (31 species). Moreover, contrary to previous results, bone cross-sectional area appears to be a significant explanatory variable (in addition to vascular canal diameter). Second, red blood cell size estimations were performed using phylogenetic eigenvector maps, and this method excludes a fraction of the phylogenetic information. This is because it generates a high number of eigenvectors requiring a selection procedure to compile a subset of them to avoid model overfitting. Here we inferred the thermophysiology of Notosuchia using phylogenetic logistic regressions, a method that overcomes this problem by including all of the phylogenetic information and a sample of 46 tetrapods. These analyses suggest that Araripesuchus wegeneri, Armadillosuchus arrudai, Baurusuchus sp., Iberosuchus macrodon, and Stratiotosuchus maxhechti were ectothermic organisms.
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重新考察了Notosuchia (Pseudosuchia: Crocodylomorpha)的热代谢机制的古组织学推断
摘要Notosuchia是一组主要分布在陆地上的鳄鱼。突出的嵴悬在髋臼上,细长的直轴长骨靠近关节处有肌肉插入,膝关节稳定,这表明他们的姿势是直立的。这种立场被认为与吸热有关,因为它存在于哺乳动物和鸟类中,有助于提高其呼吸系统的效率。然而,一项骨骼古组织学研究出乎意料地表明,Notosuchia是一种外热生物。Notosuchia的热生理状况值得进一步分析,因为之前的研究方法可以改进。首先,它是基于红细胞大小和骨血管管直径之间的关系,使用14种现存的四足动物进行测试。在这里,我们使用现存四足动物(31种)的更全面的样本来提供这种关系的证据。此外,与先前的结果相反,骨截面积似乎是一个重要的解释变量(除了血管管直径)。其次,使用系统发育特征向量图进行红细胞大小估计,该方法排除了一部分系统发育信息。这是因为它生成了大量的特征向量,需要一个选择过程来编译它们的子集,以避免模型过拟合。在这里,我们使用系统发育逻辑回归推断了Notosuchia的热生理学,这种方法通过包括所有系统发育信息和46个四足动物的样本来克服这个问题。这些分析表明,Araripeschus wegeneri、Armadillouschus arrudai、Baurusuchus sp.、Iberouschus macrodon和Stratootsuchus maxhechti是外热生物。
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来源期刊
Paleobiology
Paleobiology 地学-古生物学
CiteScore
5.30
自引率
3.70%
发文量
38
审稿时长
>12 weeks
期刊介绍: Paleobiology publishes original contributions of any length (but normally 10-50 manuscript pages) dealing with any aspect of biological paleontology. Emphasis is placed on biological or paleobiological processes and patterns, including macroevolution, extinction, diversification, speciation, functional morphology, bio-geography, phylogeny, paleoecology, molecular paleontology, taphonomy, natural selection and patterns of variation, abundance, and distribution in space and time, among others. Taxonomic papers are welcome if they have significant and broad applications. Papers concerning research on recent organisms and systems are appropriate if they are of particular interest to paleontologists. Papers should typically interest readers from more than one specialty. Proposals for symposium volumes should be discussed in advance with the editors.
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