首页> 外文期刊>Evolution: International Journal of Organic Evolution >Anatomical network analysis of the musculoskeletal system reveals integration loss and parcellation boost during the fins-to-limbs transition
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Anatomical network analysis of the musculoskeletal system reveals integration loss and parcellation boost during the fins-to-limbs transition

机译:肌肉骨骼系统的解剖网络分析揭示了在鳍到肢体过渡期间的集成损失和局部促进

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Tetrapods evolved from within the lobe-finned fishes around 370 Ma. The evolution of limbs from lobe-fins entailed a major reorganization of the skeletal and muscular anatomy of appendages in early tetrapods. Concurrently, a degree of similarity between pectoral and pelvic appendages also evolved. Here, we compared the anatomy of appendages in extant lobe-finned fishes (Latimeria and Neoceratodus) and anatomically plesiomorphic amphibians (Ambystoma, Salamandra) and amniotes (Sphenodon) to trace and reconstruct themusculoskeletal changes that took place during the fins-to-limbs transition.We quantified the anatomy of appendages using network analysis. First, we built network models-in which nodes represent bones and muscles, and links represent their anatomical connections-and then we measured network parameters related to their anatomical integration, heterogeneity, and modularity. Our results reveal an evolutionary transition toward less integrated, more modular appendages. We interpret this transition as a diversification of muscle functions in tetrapods compared to lobe-finned fishes. Limbs and lobe-fins show also a greater similarity between their pectoral and pelvic appendages than ray-fins do. These findings on extant species provide a basis for future quantitative and comprehensive reconstructions of the anatomy of limbs in early tetrapod fossils, and a way to better understand the fins-to-limbs transition.
机译:Tetrapods从370 mA左右的叶片翅片鱼中演变。从叶片翅片的肢体的演变需要重组早期四藏的骨骼和肌肉解剖学的重组。同时,胸腔和骨盆附属物之间的一定程度的相似性也在演变。在这里,我们比较了现有的叶片(Latimeria和Neoceratodus)和解剖学鞘翅目两栖动物(Ambystoma,Salamandra)和羊膜(Sphenodon)中的附属物的解剖学,以追踪和重建在鳍到肢体过渡期间发生的题为骨骼变化。我们使用网络分析量化了附属物的解剖学。首先,我们建立了网络模型 - 其中节点代表骨骼和肌肉,链接表示其解剖连接 - 然后我们测量与其解剖集成,异质性和模块化相关的网络参数。我们的结果揭示了对较少集成,更模块化的附属物的进化过渡。与瓣翅片鱼相比,我们将这种转变解释为Tetrapods中的肌肉功能的多样化。肢体和叶片在其胸腔和盆腔阑尾之间的相似性也比射线鳍片更大。现存物种上的这些发现为未来Tetrapod化石中的肢体解剖学的未来定量和全面重建提供了基础,以及更好地了解鳍肢过渡的方法。

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