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首页> 外文期刊>Development >Rho kinase activity controls directional cell movements during primitive streak formation in the rabbit embryo
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Rho kinase activity controls directional cell movements during primitive streak formation in the rabbit embryo

机译:Rho激酶活性控制兔胚胎原始条纹形成过程中的定向细胞运动

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摘要

During animal gastrulation, the specification of the embryonic axes is accompanied by epithelio-mesenchymal transition (EMT), the first major change in cell shape after fertilization. EMT takes place in disparate topographical arrangements, such as the circular blastopore of amphibians, the straight primitive streak of birds and mammals or in intermediate gastrulation forms of other amniotes such as reptiles. Planar cell movements are prime candidates to arrange specific modes of gastrulation but there is no consensus view on their role in different vertebrate classes. Here, we test the impact of interfering with Rho kinase-mediated cell movements on gastrulation topography in blastocysts of the rabbit, which has a flat embryonic disc typical for most mammals. Time-lapse video microscopy, electron microscopy, gene expression and morphometric analyses of the effect of inhibiting ROCK activity showed - besides normal specification of the organizer region - a dose-dependent disruption of primitive streak formation; this disruption resulted in circular, arc-shaped or intermediate forms, reminiscent of those found in amphibians, fishes and reptiles. Our results reveal a crucial role of ROCK-controlled directional cell movements during rabbit primitive streak formation and highlight the possibility that temporal and spatial modulation of cell movements were instrumental for the evolution of gastrulation forms.
机译:在动物胃肠中,胚轴的规格伴随着上皮-间质转化(EMT),这是受精后细胞形状的第一个主要变化。 EMT发生在不同的地形安排中,例如两栖动物的圆形胚孔,鸟类和哺乳动物的原始原始笔直条纹或其他羊水(例如爬行动物)的中间消化形式。平面细胞运动是安排特定胃化方式的主要候选者,但关于它们在不同脊椎动物类别中的作用尚无共识。在这里,我们测试了干扰Rho激酶介导的细胞运动对家兔胚泡胃肠道形貌的影响,该胚泡具有大多数哺乳动物典型的扁平胚盘。延时视频显微镜,电子显微镜,基因表达和抑制ROCK活性影响的形态分析表明-除了正常的组织区以外-原始条纹形成的剂量依赖性破坏。这种破坏导致形成圆形,弧形或中间形式,让人想起在两栖动物,鱼类和爬行动物中发现的形式。我们的研究结果揭示了ROCK控制的定向细胞运动在兔原始条纹形成过程中的关键作用,并突出了细胞运动的时空调制对胃泌素形式的进化起作用的可能性。

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