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首页> 外文期刊>Development >Fgf signalling controls the dorsoventral patterning of the zebrafish embryo.
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Fgf signalling controls the dorsoventral patterning of the zebrafish embryo.

机译:Fgf信号控制斑马鱼胚胎的背腹模式。

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The establishment of dorsoventral (DV) patterning in vertebrate embryos depends on the morphogenic activity of a group of Tgfbeta superfamily members, the bone morphogenetic proteins (Bmps) (which specify ventral cell fates), and on their interaction with their dorsally secreted cognate inhibitors chordin and noggin. In the zebrafish, genetic analysis has revealed that Bmp2b and Bmp7, as well as their antagonist chordin, are required for proper DV patterning. The expression of Bmp genes is initially activated in the whole blastula. Well before the beginning of gastrulation, Bmp gene expression progressively disappears from the dorsal side to become restricted to the ventral part of the embryo. We show that this early restriction of Bmp gene expression, which occurs independently of noggin and chordin, is an essential step in the establishment of DV patterning. The progressive ventral restriction of Bmp gene transcripts is coincident with the spreading of Fgf activity from the dorsal side of the embryo,suggesting that Fgf signalling is implicated in dorsal downregulation of Bmp gene expression. In accordance with this, activation of the Fgf/Ras/Mapk-signalling pathway inhibits ventral Bmp gene expression, thereby causing a dorsalisation of the embryo. Conversely, inhibition of Fgf signalling causes Bmp gene expression to expand dorsally, leading to an expansion of ventral cell fates. In accordance with an important role of Fgf signalling in the DV patterning of the zebrafish, we show that loss of Fgf8 function enhances the ventralisation of chordin-deficient embryos. Our results thereby demonstrate that pre-gastrula stage Fgf-signalling is essential to delimit the expression domain of the genes encoding the functional morphogen of the dorsoventral axis of the early zebrafish embryo.
机译:在脊椎动物胚胎中背腹(DV)模式的建立取决于一组Tgfbeta超家族成员的形态发生活性,骨形态发生蛋白(Bmps)(用于指定腹侧细胞的命运),以及它们与背侧分泌的同源抑制剂chordin的相互作用和头。在斑马鱼中,遗传分析表明,正确的DV图案化需要Bmp2b和Bmp7以及它们的拮抗剂chordin。 Bmp基因的表达最初在整个囊胚中被激活。在开始胃化之前,Bmp基因的表达从背侧逐渐消失,并局限于胚胎的腹侧部分。我们表明,这种Bmp基因表达的早期限制独立于头蛋白和chordin发生,是DV模式建立中必不可少的步骤。 Bmp基因转录本的进行性腹侧限制与胚胎背侧Fgf活性的扩散相吻合,这提示Fgf信号传导与Bmp基因表达的背侧下调有关。据此,Fgf / Ras / Mapk信号通路的激活抑制了腹侧Bmp基因的表达,从而引起了胚胎的背侧化。相反,抑制Fg​​f信号导致Bmp基因表达向背侧扩展,导致腹侧细胞命运的扩展。根据Fgf信号在斑马鱼的DV模式中的重要作用,我们表明Fgf8功能的丧失增强了chordin缺陷胚胎的腹侧化。因此,我们的结果证明,胃前期Fgf信号转导对于界定编码早期斑马鱼胚胎背腹轴功能性形态原的基因的表达域至关重要。

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