在鸡胚的原始条纹形成过程中,谁移动谁。

Hfsp Journal Pub Date : 2009-01-01 Epub Date: 2009-03-31 DOI:10.2976/1.3103933
Manli Chuai, Cornelis J Weijer
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引用次数: 25

摘要

原肠形成是所有脊椎动物发育的关键阶段。在原肠形成过程中,中胚层细胞在胚胎内移动,形成肠道、肌肉和骨骼。在羊膜动物中,中胚层细胞通过一种称为原始条纹的结构在胚胎内移动,这种结构从胚胎的后极向前延伸,穿过胚胎的中线。原始条纹的形成涉及一层高度极化的上皮外胚层细胞的大规模细胞流动。外胚层通过发育良好的基层从下层的下胚层细胞中分离出来。最近通过纤维连接蛋白特异性荧光抗体标记和延时显微镜跟踪体内细胞外基质动力学的实验表明,细胞外基质动力学基本上与观察到的外胚层细胞位移一致(Zamir et al., 2008, PLoS Biol 6, e247)。这些观察结果提出了一个重要的问题:谁在移动谁,细胞在哪里获得牵引力。我们讨论这些问题和他们的含义,我们的理解在鸡胚原始条纹形成过程中潜在的细胞流动机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Who moves whom during primitive streak formation in the chick embryo.

Gastrulation is a critical stage in the development of all vertebrates. During gastrulation mesendoderm cells move inside the embryo to form the gut, muscles, and skeleton. In amniotes the mesendoderm cells move inside the embryo through a structure known as the primitive streak, extending from the posterior pole anterior through the midline of the embryo. Primitive streak formation involves large scale cell flows of a layer of highly polarized epithelial epiblast cells. The epiblast is separated from a lower layer of hypoblast cells through a well developed basal lamina. Recent experiments in which in vivo extracellular matrix dynamics was followed via labeling with fibronectin specific fluorescent antibodies and time-lapse microscopy have suggested that extracellular matrix dynamics essentially coincides with the observed epiblast cell displacements (Zamir et al., 2008, PLoS Biol 6, e247). These observations raise the important question of who moves whom and where do cells derive traction. We discuss these matters and their implications for our understanding of the mechanisms underlying cell flows during primitive streak formation in the chick embryo.

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Hfsp Journal
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