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从鱼类到四足动物过渡过程中前肢肌肉骨骼功能的演化。

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

作者信息

Molnar J L, Hutchinson J R, Diogo R, Clack J A, Pierce S E

机构信息

Anatomy Department, New York Institute of Technology College of Osteopathic Medicine, Northern Boulevard, Old Westbury, NY 11568, USA.

Structure & Motion Laboratory, Department of Comparative Biomedical Sciences, The Royal Veterinary College, Hawkshead Lane, North Mymms, Hertfordshire AL9 7TA, UK.

出版信息

Sci Adv. 2021 Jan 22;7(4). doi: 10.1126/sciadv.abd7457. Print 2021 Jan.

Abstract

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 , , and 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.

摘要

脊椎动物进化中最引人入胜的问题之一是四足动物如何获得在陆地上行走的能力。尽管已经提出了许多假说,但很少有利用化石记录进行严格检验的。在这里,我们构建了、和的胸鳍附肢的三维肌肉骨骼模型,并定量研究了鳍到肢体转变过程中前肢功能的变化。通过与现存鱼类和四足动物进行比较,我们发现早期四足动物具有一系列特征,包括肱骨长轴旋转的活动受限、肱骨后缩(而非下压/内收)的肌肉杠杆作用增加,以及肘部屈伸活动增加。我们推断,四足动物前肢进化的最初步骤与肢体和基质的相互作用有关,而用于支撑体重的特化则出现得较晚。这些结果共同表明,水生和陆地环境的竞争性选择压力产生了一种独特的、祖先的“早期四足动物”前肢运动模式,不同于任何现存动物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d50a/10964964/a4e25c9607c3/abd7457-f1.jpg

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