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四足动物肢体肌肉系统的演化

Evolution of the muscular system in tetrapod limbs.

作者信息

Hirasawa Tatsuya, Kuratani Shigeru

机构信息

Laboratory for Evolutionary Morphology, RIKEN Center for Biosystems Dynamics Research (BDR), 2-2-3 Minatojima-minami, Chuo-ku, Kobe, Hyogo 650-0047 Japan.

Evolutionary Morphology Laboratory, RIKEN Cluster for Pioneering Research (CPR), 2-2-3 Minatojima-minami, Chuo-ku, Kobe, Hyogo 650-0047 Japan.

出版信息

Zoological Lett. 2018 Sep 20;4:27. doi: 10.1186/s40851-018-0110-2. eCollection 2018.

Abstract

While skeletal evolution has been extensively studied, the evolution of limb muscles and brachial plexus has received less attention. In this review, we focus on the tempo and mode of evolution of forelimb muscles in the vertebrate history, and on the developmental mechanisms that have affected the evolution of their morphology. Tetrapod limb muscles develop from diffuse migrating cells derived from dermomyotomes, and the limb-innervating nerves lose their segmental patterns to form the brachial plexus distally. Despite such seemingly disorganized developmental processes, limb muscle homology has been highly conserved in tetrapod evolution, with the apparent exception of the mammalian diaphragm. The limb mesenchyme of lateral plate mesoderm likely plays a pivotal role in the subdivision of the myogenic cell population into individual muscles through the formation of interstitial muscle connective tissues. Interactions with tendons and motoneuron axons are involved in the early and late phases of limb muscle morphogenesis, respectively. The mechanism underlying the recurrent generation of limb muscle homology likely resides in these developmental processes, which should be studied from an evolutionary perspective in the future.

摘要

虽然骨骼进化已经得到了广泛研究,但肢体肌肉和臂丛神经的进化却较少受到关注。在这篇综述中,我们聚焦于脊椎动物历史上前肢肌肉的进化节奏和模式,以及影响其形态进化的发育机制。四足动物的肢体肌肉由源自皮肌节的分散迁移细胞发育而来,支配肢体的神经失去其节段模式,在远端形成臂丛神经。尽管发育过程看似杂乱无章,但肢体肌肉同源性在四足动物进化中高度保守,哺乳动物的膈肌显然是个例外。侧板中胚层的肢体间充质可能通过形成间质肌肉结缔组织,在将成肌细胞群体细分为单个肌肉的过程中发挥关键作用。与肌腱和运动神经元轴突的相互作用分别参与肢体肌肉形态发生的早期和晚期阶段。肢体肌肉同源性反复出现的潜在机制可能存在于这些发育过程中,未来应从进化角度对其进行研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6cc1/6148784/e09723477cde/40851_2018_110_Fig1_HTML.jpg

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