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Evolutionary parallelisms of pectoral and pelvic network-anatomy from fins to limbs

机译:胸鳍和骨盆网络解剖学从鳍到四肢的进化平行性

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Lobe-fins transformed into limbs during the Devonian period, facilitating the water-to-land transition in tetrapods. We traced the evolution of well-articulated skeletons across the fins-to-limbs transition, using a network-based approach to quantify and compare topological features of fins and limbs. We show that the topological arrangement of bones in pectoral and pelvic appendages evolved in parallel during the fins-to-limbs transition, occupying overlapping regions of the morphospace, following a directional trend, and decreasing their disparity over time. We identify the presence of digits as the morphological novelty triggering topological changes that discriminated limbs from fins. The origin of digits caused an evolutionary shift toward appendages that were less densely and heterogeneously connected, but more assortative and modular. Disparity likewise decreased for both appendages, more markedly until a time concomitant with the earliest-known tetrapod tracks. Last, we rejected the presence of a pectoral-pelvic similarity bottleneck at the origin of tetrapods.
机译:泥盆纪时期,叶片鳍变成了肢体,从而促进了四足动物的水陆过渡。我们使用基于网络的方法来量化和比较鳍和四肢的拓扑特征,从而跟踪了鳍到肢的过渡过程中关节清晰的骨骼的演变。我们显示,在鳍到肢的过渡过程中,骨骼在胸骨和骨盆附肢中的拓扑结构平行演化,占据了形态空间的重叠区域,遵循方向性趋势,并随着时间的流逝减小了视差。我们确定数字的存在是形态上的新奇,它触发了将肢体与鳍区分开的拓扑变化。数字的起源导致了向附属物的进化转变,这些附属物的密度和异质性较弱,但具有更多的组合性和模块性。同样,两个附肢的视差也减小了,直到与已知的最早的四脚架步道相伴的时间才显着减少。最后,我们拒绝在四足动物的起源处出现胸骨-盆腔相似性瓶颈。

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