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首页> 外文期刊>Developmental biology >Conserved and divergent expression patterns of markers of axial development in reptilian embryos: Chinese soft-shell turtle and Madagascar ground gecko
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Conserved and divergent expression patterns of markers of axial development in reptilian embryos: Chinese soft-shell turtle and Madagascar ground gecko

机译:爬行动物胚胎中轴向发育标记的保守和发散表达方式:中国Chinese和马达加斯加地面壁虎

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The processes of development leading up to gastrulation have been markedly altered during the evolution of amniotes, and it is uncertain how the mechanisms of axis formation are conserved and diverged between mouse and chick embryos. To assess the conservation and divergence of these mechanisms, this study examined gene expression patterns during the axis formation process in Chinese soft-shell turtle and Madagascar ground gecko preovipositional embryos. The data suggest that NODAL signaling, similarly to avian embryos but in contrast to eutherian embryos, does not have a role in epiblast and hypoblast development in reptilian embryos. The posterior marginal epiblast (PME) is the initial molecular landmark of axis formation in reptilian embryos prior to primitive plate development. Ontogenetically, PME may be the precursor of the primitive plate, and phylogenetically, Roller's sickle and posterior marginal zone in avian development may have been derived from the PME. Most of the genes expressed in the mouse anterior visceral endoderm (AVE genes), especially signaling antagonist genes, are not expressed in the hypoblast of turtle and gecko embryos, though they are expressed in the avian hypo blast. This study proposes that AVE gene expression in the hypoblast and the visceral endoderm could have been independently established in avian and eutherian lineages, similar to the primitive streak that has been independently acquired in these lineages. (C) 2016 Elsevier Inc. All rights reserved.
机译:在羊膜动物的进化过程中,导致胃气化的发育过程已经发生了显着变化,并且尚不清楚如何在小鼠和雏鸡胚胎之间保存和分散轴形成的机制。为了评估这些机制的保守性和差异性,本研究检查了中国soft和马达加斯加地面壁虎对位胚胎中轴形成过程中的基因表达模式。数据表明,NODAL信号传导与禽类胚胎类似,但与真人胚胎相反,在爬行类胚胎的上皮细胞和下皮细胞发育中不起作用。后缘上皮细胞(PME)是原始板发育之前爬行动物胚胎中轴形成的初始分子标志。在个体发育上,PME可能是原始板块的前体,而在系统发育上,禽类发育中的Roller's镰刀和后缘区域可能源自PME。小鼠前内脏内胚层中表达的大多数基因(AVE基因),特别是信号传导拮抗剂基因,虽然在禽类次胚细胞中表达,但在海龟和壁虎胚胎的次胚中不表达。这项研究提出,在禽和欧亚系中可以独立建立亚胚层和内脏内胚层中的AVE基因表达,类似于在这些系中独立获得的原始条纹。 (C)2016 Elsevier Inc.保留所有权利。

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