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外源性视黄酸诱导斑马鱼胸鳍芽中 Sonic hedgehog 表达呈阶段特异性、短暂性和渐进性扩展。

Exogenous retinoic acid induces a stage-specific, transient and progressive extension of Sonic hedgehog expression across the pectoral fin bud of zebrafish.

作者信息

Hoffman Lisa, Miles Jennifer, Avaron Fabien, Laforest Lynda, Akimenko Marie-Andrée

机构信息

Ottawa Health Research Institute, Ottawa, Ontario, Canada.

出版信息

Int J Dev Biol. 2002;46(7):949-56.

Abstract

We have performed a time course analysis of the expression of Sonichedgehog (shh) and patched1 (ptc1) in response to exogenous retinoic acid (RA) application to get some insight into the mechanism(s) underlying the formation of a mirror-image duplication of shh and ptc1 domains of expression in the pectoral fin buds of zebrafish. We have shown that RA exposure during the early stages of pectoral fin development first results in a rapid decrease or complete loss of shh/ptc1 expression. This is followed by reappearance of transcripts in the normal posterior domain, then by a stage-dependent and progressive expansion of the shh domain from the ZPA towards the anterior margin of the bud. Shh transcripts are induced in mesenchymal cells underlying the ventral ectoderm at the base of the bud. Once shh expression is activated in the most anterior cells, the number of shh-expressing cells increases in this region, possibly through an amplification mechanism involving signals from the apical ectodermal ridge. At this time, shh expression disappears from cells centrally located in the bud, resulting in the formation of the two distinct domains. An anterior extension of shh expression is also obtained in syu mutants with impaired shh function, suggesting that shh induction across the fin bud is independent of shh signaling. This study suggests the existence of complex mechanisms controlling the spatial and temporal expression of shh in the developing fin bud.

摘要

我们进行了一项时间进程分析,研究音猬因子(shh)和patched1(ptc1)的表达对外源视黄酸(RA)应用的响应,以深入了解斑马鱼胸鳍芽中shh和ptc1表达域镜像重复形成的潜在机制。我们已经表明,在胸鳍发育早期暴露于RA首先会导致shh/ptc1表达迅速下降或完全丧失。随后,转录本在正常的后域重新出现,接着是shh域从极化活性区(ZPA)向芽的前缘进行阶段依赖性的渐进扩展。Shh转录本在芽基部腹侧外胚层下方的间充质细胞中被诱导。一旦shh在最前端的细胞中被激活,该区域中表达shh的细胞数量就会增加,这可能是通过一种涉及来自顶端外胚层嵴信号的扩增机制实现的。此时,位于芽中央的细胞中shh表达消失,从而形成两个不同的域。在shh功能受损的syu突变体中也获得了shh表达的向前延伸,这表明跨鳍芽的shh诱导独立于shh信号传导。这项研究表明,在发育中的鳍芽中存在控制shh时空表达的复杂机制。

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