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Evolution of the new head by gradual acquisition of neural crest regulatory circuits

机译:通过逐步获取神经c调节电路来改进新头部

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The neural crest, an embryonic stem-cell population, is a vertebrate innovation that has been proposed to be a key component of the 'new head', which imbued vertebrates with predatory behaviour(1,2). Here, to investigate how the evolution of neural crest cells affected the vertebrate body plan, we examined the molecular circuits that control neural crest development along the anteroposterior axis of a jawless vertebrate, the sea lamprey. Gene expression analysis showed that the cranial subpopulation of the neural crest of the lamprey lacks most components of a transcriptional circuit that is specific to the cranial neural crest in amniotes and confers the ability to form craniofacial cartilage onto non-cranial neural crest subpopulations(3). Consistent with this, hierarchical clustering analysis revealed that the transcriptional profile of the lamprey cranial neural crest is more similar to the trunk neural crest of amniotes. Notably, analysis of the cranial neural crest in little skate and zebrafish embryos demonstrated that the transcriptional circuit that is specific to the cranial neural crest emerged via the gradual addition of network components to the neural crest of gnathostomes, which subsequently became restricted to the cephalic region. Our results indicate that the ancestral neural crest at the base of the vertebrate lineage possessed a trunk-like identity. We propose that the emergence of the cranial neural crest, by progressive assembly of an axial-specific regulatory circuit, allowed the elaboration of the new head during vertebrate evolution.
机译:神经c是胚胎干细胞种群,是脊椎动物的一种创新,已被认为是“新头”的关键组成部分,它使脊椎动物具有掠夺性行为(1,2)。在这里,为了研究神经rest细胞的进化如何影响脊椎动物的身体计划,我们研究了沿着无颚脊椎动物海七rey鱼前后轴控制神经c发育的分子电路。基因表达分析表明,七lamp鳗的神经the的颅亚群缺乏羊膜特异于颅神经rest的转录回路的大部分成分,并赋予了在非颅神经neural亚群上形成颅面软骨的能力(3)。 。与此相符的是,层次聚类分析表明,七lamp鳗颅神经neural的转录特征与羊膜动物的躯干神经rest更为相似。值得注意的是,对小溜冰鞋和斑马鱼胚胎中的颅神经analysis的分析表明,颅神经neural特有的转录途径是通过将网络成分逐渐添加到棘齿动物的神经rest中而形成的,随后该神经circuit被限制在头区域。我们的结果表明,在脊椎动物谱系的基础上的祖先神经rest具有躯干状的身份。我们提出,通过逐步装配特定于轴向的调节电路来实现颅神经c的出现,可以使脊椎动物进化过程中新头部的形成变得更加精细。

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