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Evolution of forelimb musculoskeletal function across the fish-to-tetrapod transition

机译:鱼到Tetrapod过渡的前肢肌肉骨骼功能的演变

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One of the most intriguing questions in vertebrate evolution is how tetrapods gained the ability to walk on land. Although many hypotheses have been proposed, few have been rigorously tested using the fossil record. Here, we build three-dimensional musculoskeletal models of the pectoral appendage in Eusthenopteron , Acanthostega , and Pederpes and quantitatively examine changes in forelimb function across the fin-to-limb transition. Through comparison with extant fishes and tetrapods, we show that early tetrapods share a suite of characters including restricted mobility in humerus long-axis rotation, increased muscular leverage for humeral retraction, but not depression/adduction, and increased mobility in elbow flexion-extension. We infer that the earliest steps in tetrapod forelimb evolution were related to limb-substrate interactions, whereas specializations for weight support appeared later. Together, these results suggest that competing selective pressures for aquatic and terrestrial environments produced a unique, ancestral “early tetrapod” forelimb locomotor mode unlike that of any extant animal.
机译:脊椎动物进化中最有趣的问题之一是Tetrapods如何获得陆地走路的能力。虽然已经提出了许多假设,但很少使用化石记录严格地测试。在这里,我们在eusthenopteron,acanthostega和pederps中构建胸膜旁旁的三维肌肉骨骼模型,并定量地在翅片到肢体转变中检查前肢功能的变化。通过与现存鱼类和四藏品的比较,我们表明早期的Tetrapods共享一套人物,包括肱骨长轴旋转中的受限制的流动性,增加肌肉收缩的肌肉杠杆,但不是抑郁/内收,以及肘部屈曲 - 延伸的移动性增加。我们推断Tetrapod Forelimb Evolution中最早的步骤与肢体底物相互作用有关,而重量支持的专业率稍后出现。这些结果表明,与任何现存的动物的水生和陆地环境竞争选择性压力产生了独特的祖先的“早期Tetrapod”的前肢运动模式。

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