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首页> 外文期刊>Gene Expression Patterns: A Section of Mechanisms of Development >Duplicate sfrp1 genes in zebrafish: sfrp1a is dynamically expressed in the developing central nervous system, gut and lateral line
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Duplicate sfrp1 genes in zebrafish: sfrp1a is dynamically expressed in the developing central nervous system, gut and lateral line

机译:斑马鱼中存在重复的sfrp1基因:sfrp1a在发育中的中枢神经系统,肠和侧线中动态表达

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摘要

The secreted frizzled-related proteins (Sfrp) are a family of soluble proteins with diverse biological functions having the capacity to bind Wnt ligands, to modulate Wnt signalling, and to signal directly via the Wnt receptor, Frizzled. In an enhancer trap screen for embryonic expression in zebrafish we identified an sfrp1 gene. Previous studies suggest an important role for sfrp1 in eye development, however, no data have been reported using the zebrafish model. In this paper, we describe duplicate sfrp1 genes in zebrafish and present a detailed analysis of the expression profile of both genes. Whole mount in situ hybridisation analyses of sfrp1a during embryonic and larval development revealed a dynamic expression profile, including: the central nervous system, where sfrp1a was regionally expressed throughout the brain and developing eye; the posterior gut, from the time of endodermal cell condensation; the lateral line, where sfrp1a was expressed in the migrating primordia and interneuromast cells that give rise to the sensory organs. Other sites included the blastoderm, segmenting mesoderm, olfactory placode, developing ear, pronephros and fin-bud. We have also analysed sfrp1b expression during embryonic development. Surprisingly this gene exhibited a divergent expression profile being limited to the yolk syncytium under the elongating tail-bud, which later covered the distal yolk extension, and transiently in the tail-bud mesenchyme. Overall, our studies provide a basis for future analyses of these developmentally important factors using the zebrafish model.
机译:分泌的卷曲蛋白相关蛋白(Sfrp)是具有多种生物学功能的可溶性蛋白家族,具有结合Wnt配体,调节Wnt信号传导以及直接通过Wnt受体Frizzled发出信号的能力。在斑马鱼中胚胎表达的增强子捕获筛选中,我们鉴定出了sfrp1基因。先前的研究表明sfrp1在眼睛发育中具有重要作用,但是,使用斑马鱼模型尚无数据报道。在本文中,我们描述了斑马鱼中重复的sfrp1基因,并对这两个基因的表达谱进行了详细分析。在胚胎和幼虫发育过程中对sfrp1a进行的整个原位杂交分析揭示了动态表达特征,包括:中枢神经系统,其中sfrp1a在整个大脑和发育中的眼睛区域表达;从内胚层细胞凝结开始到后肠;侧线,其中sfrp1a在迁移的原基和间质细胞中表达,从而引起感觉器官。其他部位包括胚盘,中胚层分段,嗅觉斑,发育中的耳朵,前ph和鳍芽。我们还分析了胚胎发育过程中sfrp1b的表达。令人惊讶地,该基因表现出发散的表达谱,该表达谱限于在延长的尾巴芽下的卵黄合胞体,其随后覆盖了远端的卵黄延伸,并且在尾芽间质中短暂地存在。总体而言,我们的研究为使用斑马鱼模型对这些发展重要因素的未来分析提供了基础。

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