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非洲爪蟾胚胎纤毛表皮中的平面极性

Planar polarity in the ciliated epidermis of Xenopus embryos.

作者信息

König G, Hausen P

机构信息

MPI für Entwicklungsbiologie, Tübingen, Federal Republic of Germany.

出版信息

Dev Biol. 1993 Dec;160(2):355-68. doi: 10.1006/dbio.1993.1312.

DOI:10.1006/dbio.1993.1312
PMID:8253269
Abstract

The coordinated orientation of ciliary beat in the larval epidermis of amphibians, evident in an organized streamline pattern, suggests a planar polarity of the epithelium, i.e., a polarity within the plane of the cell sheet. It has been proposed that the direction of ciliary beat is determined at mid gastrula by a gradient of a diffusible factor produced by the mesoderm. To analyze whether ectoderm in isolation can establish a uniform direction of ciliary beat, and at what stage its polarity is specified in the embryo, ectoderm of Xenopus laevis embryos of different stages was cultured in vitro on substrates. On concanavalin A, ectoderm isolated at early gastrula stages, i.e., prior to any contact with mesoderm, can autonomously coordinate the direction of ciliary beat, at least in small regions. A uniform planar polarity is expressed by ectoderm explanted from the early mid gastrula onward. On fibronectin, which promotes migration, the direction of movement correlates well with the direction of ciliary beat, and directional migration can even override the inherent polarity specified prior to explantation. Embryos which lack dorsal mesoderm nevertheless develop a highly organized streamline pattern, excluding a strict requirement for dorsal mesoderm for the determination of planar polarity. However, in spite of the early specification of planar polarity found for isolated tissue, rotated ectodermal transplants in situ can readjust their polarity in accordance with that of the host.

摘要

两栖动物幼体表皮中纤毛摆动的协调方向,以一种有组织的流线型模式表现出来,这表明上皮细胞具有平面极性,即在细胞片层平面内的极性。有人提出,纤毛摆动的方向在原肠胚中期由中胚层产生的一种可扩散因子的梯度决定。为了分析分离的外胚层是否能建立统一的纤毛摆动方向,以及其极性在胚胎的哪个阶段被确定,将不同阶段的非洲爪蟾胚胎的外胚层在体外培养在基质上。在伴刀豆球蛋白A上,在原肠胚早期阶段分离的外胚层,即在与中胚层有任何接触之前,至少在小区域内可以自主协调纤毛摆动的方向。从原肠胚中早期开始移植的外胚层表现出统一的平面极性。在促进迁移的纤连蛋白上,迁移方向与纤毛摆动方向密切相关,定向迁移甚至可以覆盖移植前确定的固有极性。缺乏背侧中胚层的胚胎仍然会形成高度有组织的流线型模式,这排除了背侧中胚层对平面极性确定的严格要求。然而,尽管分离组织的平面极性在早期就已确定,但原位旋转的外胚层移植可以根据宿主的极性重新调整其极性。

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