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哺乳动物和爬行动物谱系形态演化分歧模式的早期起源。

Early Origins of Divergent Patterns of Morphological Evolution on the Mammal and Reptile Stem-Lineages.

机构信息

Department of Earth Sciences, University of Cambridge, Downing Street, Cambridge, UK.

Department of Earth Sciences, University of Oxford, South Parks Road, CB2 3EQ Oxford, UK.

出版信息

Syst Biol. 2022 Aug 10;71(5):1195-1209. doi: 10.1093/sysbio/syac020.

Abstract

The origin of amniotes 320 million years ago signaled independence from water in vertebrates and was closely followed by divergences within the mammal and reptile stem lineages (Synapsida and Reptilia). Early members of both groups had highly similar morphologies, being superficially "lizard-like" forms with many plesiomorphies. However, the extent to which they might have exhibited divergent patterns of evolutionary change, with the potential to explain the large biological differences between their living members, is unresolved. We use a new, comprehensive phylogenetic dataset to quantify variation in rates and constraints of morphological evolution among Carboniferous-early Permian amniotes. We find evidence for an early burst of evolutionary rates, resulting in the early origins of morphologically distinctive subgroups that mostly persisted through the Cisuralian. Rates declined substantially through time, especially in reptiles. Early reptile evolution was also more constrained compared with early synapsids, exploring a more limited character state space. Postcranial innovation in particular was important in early synapsids, potentially related to their early origins of large body size. In contrast, early reptiles predominantly varied the temporal region, suggesting disparity in skull and jaw kinematics, and foreshadowing the variability of cranial biomechanics seen in reptiles today. Our results demonstrate that synapsids and reptiles underwent an early divergence of macroevolutionary patterns. This laid the foundation for subsequent evolutionary events and may be critical in understanding the substantial differences between mammals and reptiles today. Potential explanations include an early divergence of developmental processes or of ecological factors, warranting cross-disciplinary investigation. [Amniote; body size; constraint; phylogeny; rate.].

摘要

3.2 亿年前的羊膜动物起源标志着脊椎动物脱离了水,紧随其后的是哺乳动物和爬行动物的谱系(合弓类和爬行类)内部的分化。这两个群体的早期成员具有非常相似的形态,表面上是具有许多原始特征的“蜥蜴状”形式。然而,它们在多大程度上表现出了不同的进化变化模式,从而有可能解释它们现存成员之间的巨大生物学差异,这一点尚未解决。我们使用新的、全面的系统发育数据集来量化石炭纪-早二叠世羊膜动物形态进化的速率和约束的变化。我们发现有证据表明早期的进化率爆发,导致了形态上有区别的亚群的早期起源,这些亚群主要在西里西亚世(Cisuralian)之前就存在了。随着时间的推移,速率大幅下降,尤其是在爬行动物中。与早期的合弓类动物相比,早期的爬行动物进化受到更多的限制,探索的特征状态空间也更有限。后肢的创新在早期的合弓类动物中尤为重要,这可能与它们早期体型较大的起源有关。相比之下,早期的爬行动物主要改变了颞区,这表明颅骨和颌骨运动学的差异,预示着今天爬行动物的颅骨生物力学的多样性。我们的研究结果表明,合弓类动物和爬行动物的宏观进化模式很早就出现了分歧。这为随后的进化事件奠定了基础,对于理解当今哺乳动物和爬行动物之间的巨大差异具有重要意义。潜在的解释包括发育过程或生态因素的早期分歧,这值得跨学科研究。[羊膜动物;体型;约束;系统发育;速率。]

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fbfd/9366456/fe1eaac95fc7/syac020f1.jpg

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