成纤维细胞生长因子通路组分在再生斑马鱼鳍中的表达

IF 1 4区 生物学 Q4 DEVELOPMENTAL BIOLOGY
Nicole Cudak , Alejandra Cristina López-Delgado , Sebastian Keil , Franziska Knopf
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引用次数: 2

摘要

成年斑马鱼在截肢后可再生其附属物(鳍),包括骨结构(鳍)的再生。成纤维细胞生长因子(Fibroblast growth factor, Fgf)信号通路参与了发育过程中的形态发生过程,已被证明对鳍再生过程至关重要。此外,Fgf通路成分基因的突变导致硬骨鱼和哺乳动物(包括人类)骨骼生长异常,说明了Fgf信号在组织生长控制中的重要性。在这里,我们通过RNA原位杂交重新研究了Fgf信号通路组分的表达,检测了再生斑马鱼鳍中约一半配体和该通路所有受体的表达,fgf7、fgf10b、fgf12b、fgf17b和fgfr1b的表达模式此前未见文献报道。我们总结和讨论了已知的和新的表达定位,发现所有五种Fgf受体(fgfr1a, fgfr1b, fgfr2, fgfr3和fgfr4)和大多数测试的配体都在再生细胞的特定区域表达。本研究为研究Fgf信号在硬骨鱼附属物再生中的特异功能提供了基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fibroblast growth factor pathway component expression in the regenerating zebrafish fin

Adult zebrafish regenerate their appendages (fins) after amputation including the regeneration of bone structures (fin rays). Fibroblast growth factor (Fgf) signaling, which is involved in morphogenetic processes during development, has been shown to be essential for the process of fin regeneration. Moreover, mutations in Fgf pathway component genes lead to abnormal skeletal growth in teleosts and mammals, including humans, illustrating the importance of Fgf signaling in the growth control of tissues. Here, we revisited Fgf signaling pathway component expression by RNA in situ hybridization to test for the expression of about half of the ligands and all receptors of the pathway in the regenerating zebrafish fin. Expression patterns of fgf7, fgf10b, fgf12b, fgf17b and fgfr1b have not been reported in the literature before. We summarize and discuss known and novel localization of expression and find that all five Fgf receptors (fgfr1a, fgfr1b, fgfr2, fgfr3 and fgfr4) and most of the tested ligands are expressed in specific regions of the regenerate. Our work provides a basis to study domain specific functions of Fgf signaling in the regenerating teleost appendage.

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来源期刊
Gene Expression Patterns
Gene Expression Patterns 生物-发育生物学
CiteScore
2.30
自引率
0.00%
发文量
42
审稿时长
35 days
期刊介绍: Gene Expression Patterns is devoted to the rapid publication of high quality studies of gene expression in development. Studies using cell culture are also suitable if clearly relevant to development, e.g., analysis of key regulatory genes or of gene sets in the maintenance or differentiation of stem cells. Key areas of interest include: -In-situ studies such as expression patterns of important or interesting genes at all levels, including transcription and protein expression -Temporal studies of large gene sets during development -Transgenic studies to study cell lineage in tissue formation
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