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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Were the synapsids primitively endotherms? A palaeohistological approach using phylogenetic eigenvector maps
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Were the synapsids primitively endotherms? A palaeohistological approach using phylogenetic eigenvector maps

机译:Synapsids原始吸收吗? 一种使用系统发育特征映射地图的古论主学方法

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摘要

The acquisition of mammalian endothermy is poorly constrained both phylogenetically and temporally. Here, we inferred the resting metabolic rates (RMRs) and the thermometabolic regimes (endothermy or ectothermy) of a sample of eight extinct synapsids using palaeohistology, phylogenetic eigenvector maps (PEMs), and a sample of 17 extant tetrapods of known RMR (quantified using respirometry). We inferred high RMR values and an endothermic metabolism for the anomodonts (Lystrosaurus sp., Oudenodon bainii) and low RMR values and an ectothermic metabolism for Clepsydrops collettii, Dimetrodon sp., Edaphosaurus boanerges, Mycterosaurus sp., Ophiacodon uniformis and Sphenacodon sp. A maximum-likelihood ancestral states reconstruction of RMRs performed using the values inferred for extinct synapsids, and the values measured using respirometry in extant tetrapods, shows that the nodes Anomodontia and Mammalia were primitively endotherms. Finally, we performed a parsimony optimization of the presence of endothermy using the results obtained in the present study and those obtained in previous studies that used PEMs. For this, we assigned to each extinct taxon a thermometabolic regime (ectothermy or endothermy) depending on whether the inferred values were significantly higher, lower or not significantly different from the RMR value separating ectotherms from endotherms (1.5 ml O-2 h(-1) g(-0.67)). According to this optimization, endothermy arose independently in Archosauromorpha, Sauropterygia and Therapsida. This article is part of the theme issue 'Vertebrate palaeophysiology'.
机译:收购哺乳动物吸热的收购在系统到期和时间暂时都受到严重限制。在这里,我们推断使用古论主学,系统发育特征向量地图(PEM)和17个已知RMR的拉伸谱样品的样品的静物代谢速率(RMRS)和热替代的代谢速率(吸热或外液)(吸热或外液),以及17只公知的RMR的样品(量化使用呼吸测定)。我们推断出高RMR值和吸热的代谢(Lystrosaurus SP。,Oudenodon Bainii)和低RMR值以及CleyDrops Collettii,Dimophosaurus Boanerges,Mycterosaurus sp的异常性代谢。,Ophiacodon统一和斯坦卡科顿sp。使用用于灭绝康帕筛西突蛋白的值的最大血管祖先重建RMRS的重建,以及使用呼吸测定在远端Tetrapods中测量的值,表明节点异常和哺乳动物是主要吸收的。最后,我们使用本研究中获得的结果和使用PEMS的先前研究中获得的结果进行了吸附的存在的分析优化。为此,我们分配给每种灭绝的分类素,这取决于推断值是否明显高,从吸热的卵巢值(1.5ml O-2 H(-1 )g(-0.67))。根据这种优化,在archosauromorpha,Sauropterygia和Therapeida中独立出现吸热。本文是主题问题“脊椎动物猴体生理”的一部分。

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