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植物极旋转,一种参与非洲爪蟾中胚层和内胚层内陷的新原肠胚形成运动。

Vegetal rotation, a new gastrulation movement involved in the internalization of the mesoderm and endoderm in Xenopus.

作者信息

Winklbauer R, Schürfeld M

机构信息

Universität zu Köln, Zoologisches Institut, Weyertal 119, Germany.

出版信息

Development. 1999 Aug;126(16):3703-13. doi: 10.1242/dev.126.16.3703.

Abstract

A main achievement of gastrulation is the movement of the endoderm and mesoderm from the surface of the embryo to the interior. Despite its fundamental importance, this internalization process is not well understood in amphibians. We show that in Xenopus, an active distortion of the vegetal cell mass, vegetal rotation, leads to a dramatic expansion of the blastocoel floor and a concomitant turning around of the marginal zone which constitutes the first and major step of mesoderm involution. This vigorous inward surging of the vegetal region into the blastocoel can be analyzed in explanted slices of the gastrula, and is apparently driven by cell rearrangement. Thus, the prospective endoderm, previously thought to be moved passively, provides the main driving force for the internalization of the mesendoderm during the first half of gastrulation. For further involution, and for normal positioning of the involuted mesoderm and its rapid advance toward the animal pole, fibronectin-independent interaction with the blastocoel roof is required.

摘要

原肠胚形成的一个主要成果是内胚层和中胚层从胚胎表面向内部移动。尽管这一过程至关重要,但在两栖动物中,这种内陷过程仍未得到充分理解。我们发现,在非洲爪蟾中,植物性细胞团的主动变形,即植物性旋转,会导致囊胚腔底部显著扩张,同时边缘区发生翻转,这是中胚层内卷的第一步也是主要步骤。这种植物性区域向囊胚腔的强烈内涌可以在原肠胚的外植切片中进行分析,显然是由细胞重排驱动的。因此,先前被认为是被动移动的预定内胚层,在原肠胚形成的前半段为中内胚层的内陷提供了主要驱动力。为了进一步内卷,以及使内卷的中胚层正常定位并迅速向动物极推进,则需要与囊胚腔顶进行不依赖纤连蛋白的相互作用。

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