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The evolutionary origin of the vertebrate neural crest and its developmental gene regulatory network - insights from amphioxus

机译:脊椎动物神经c的进化起源及其发育基因调控网络-两栖动物的见解

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摘要

The neural crest is an embryonic cell population unique to vertebrates. During vertebrate embryogenesis, neural crest cells are first induced from the neural plate border; subsequently, they delaminate from the dorsal neural tube and migrate to their destination, where they differentiate into a wide variety of derivatives. The emergence of the neural crest is thought to be responsible for the evolution of many complex novel structures of vertebrates that are lacking in invertebrate chordates. Despite its central importance in understanding the origin of vertebrates, the evolutionary origin of the neural crest remains elusive. The basal chordate amphioxus (Branchiostoma floridae) occupies an outgroup position that is useful for investigating this question. In this review, 1 summarize recent genomic and comparative developmental studies between amphioxus and vertebrates and discuss their implications for the evolutionary origin of neural crest cells. I focus mainly on the origin of the gene regulatory network underlying neural crest development, and suggest several hypotheses regarding how this network could have been assembled during early vertebrate evolution.
机译:神经c是脊椎动物独有的胚胎细胞群。在脊椎动物胚胎发生过程中,首先从神经板边界诱导神经c细胞;然后,从神经板边缘诱导神经rest细胞。随后,它们从背神经管分层并迁移到目的地,在那里它们分化为各种各样的衍生物。神经c的出现被认为是脊椎动物无脊椎动物脊索动物缺乏的许多复杂新颖结构进化的原因。尽管在了解脊椎动物起源方面具有中心重要性,但神经c的进化起源仍然难以捉摸。基底的绒毛膜两栖类(佛罗里达州分支杆菌)占据了外群位置,这对于调查这个问题是有用的。在这篇综述中,1总结了两栖动物和脊椎动物之间最近的基因组和比较发育研究,并讨论了它们对神经rest细胞进化起源的影响。我主要关注神经neural发育基础的基因调控网络的起源,并提出有关在脊椎动物早期进化过程中如何组装该网络的几种假设。

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