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赤拟谷盗胚胎发育过程中Fgf信号传导与感知的位点。

Sites of Fgf signalling and perception during embryogenesis of the beetle Tribolium castaneum.

作者信息

Beermann Anke, Schröder Reinhard

机构信息

Department of Animal Genetics, Institute for Cell Biology, University of Tübingen, Auf der Morgenstelle 28, 72076 Tübingen, Germany.

出版信息

Dev Genes Evol. 2008 Apr;218(3-4):153-67. doi: 10.1007/s00427-007-0192-x. Epub 2008 Apr 8.

Abstract

The development of multicellular embryos depends on coordinated cell-to-cell signalling events. Among the numerous cell-signalling pathways, fibroblast growth factors (FGFs) are involved in important processes during embryogenesis, such as mesoderm formation during gastrulation and growth. In vertebrates, the Fgf superfamily consists of 22 family members, whereas only few FGFs are contained in the less complex genomes of insects and worms. In the recently sequenced genome of the beetle Tribolium, we identified four Fgf family members representing three subfamilies. Tribolium has Fgf1 genes that are absent in Drosophila but known from vertebrates. By phylogenetic analysis and microsynteny to Drosophila, we further classify Tc-fgf 8 as an ancestor of pyramus and thisbe, the fly Fgf8 genes. Tc-fgf8 expression in the growth zone suggests an involvement in mesoderm formation. In the embryonic head, expression of Tc-fgf8 subdivides the brain into a larger anterior and a smaller posterior region. The Fgf Tc-branchless is expressed in the embryonic tracheal placodes and in various gland-like structures. The expression patterns of the only Tribolium Fgf receptor and the adaptor molecule Downstream-of-Fgfr are largely congruent with Tc-Fgf8 and Tc-bnl. Thus, in contrast to Drosophila, only one Fgf receptor canalises Fgf signalling in different tissues in Tribolium. Our findings significantly advance our understanding of the evolution of Fgf signalling in insects.

摘要

多细胞胚胎的发育依赖于细胞间协调的信号传导事件。在众多细胞信号通路中,成纤维细胞生长因子(FGFs)参与胚胎发育过程中的重要进程,如原肠胚形成期间的中胚层形成和生长。在脊椎动物中,Fgf超家族由22个家族成员组成,而在结构相对简单的昆虫和蠕虫基因组中,仅含有少数FGFs。在最近测序的甲虫赤拟谷盗基因组中,我们鉴定出四个代表三个亚家族的Fgf家族成员。赤拟谷盗拥有在果蝇中不存在但在脊椎动物中已知的Fgf1基因。通过系统发育分析以及与果蝇的微同源性分析,我们进一步将Tc-fgf 8归类为果蝇Fgf8基因pyramus和thisbe的祖先。Tc-fgf8在生长区的表达表明其参与中胚层形成。在胚胎头部,Tc-fgf8的表达将脑部分为较大的前部区域和较小的后部区域。Fgf Tc-branchless在胚胎气管基板和各种腺样结构中表达。赤拟谷盗唯一的Fgf受体和衔接分子Fgfr下游分子的表达模式在很大程度上与Tc-Fgf8和Tc-bnl一致。因此,与果蝇不同,在赤拟谷盗中只有一个Fgf受体在不同组织中引导Fgf信号传导。我们的研究结果显著推进了我们对昆虫中Fgf信号传导进化的理解。

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