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水螅纲半球美螅水母(Clytia hemisphaerica)发育过程中FoxB和FoxQ2基因的极化表达

Polarised expression of FoxB and FoxQ2 genes during development of the hydrozoan Clytia hemisphaerica.

作者信息

Chevalier Sandra, Martin Arnaud, Leclère Lucas, Amiel Aldine, Houliston Evelyn

机构信息

"Biologie du Développement", Observatoire Océanologique, UMR7009 CNRS/Université Pierre et Marie Curie (Paris VI), 06230, Villefranche-sur-mer, France.

出版信息

Dev Genes Evol. 2006 Nov;216(11):709-20. doi: 10.1007/s00427-006-0103-6. Epub 2006 Oct 5.

Abstract

We have characterised the expression of four genes coding for Forkhead box-containing ('Fox') transcription factors identified from the hydrozoan (Leptomedusa) Clytia hemisphaerica. Phylogenetic analyses including all available non-bilaterian Fox sequences placed these genes in subfamilies B, Q2 (two genes) and O, and indicated that at least 17 Fox subfamilies were present in the common cnidarian/bilaterian ancestor, with multiple subsequent losses in cnidarian lineages. Chordate FoxB and FoxQ2A subfamily genes show polarised expression in early embryos. Correspondingly, Clytia CheFoxB expression was localised around the gastrulation site (future oral pole) at blastula and gastrula stages, with CheFoxQ2a expressed in a complementary aboral domain, maintained through larval development. Distinct later expression domains were observed for CheFoxB in the larval endoderm region, and in the statocyst, gonad and tentacle bulb of the medusa. A second Clytia FoxQ2 gene, CheFoxQ2b, not expressed in the embryo, larva or polyp, was detected uniquely in the gonads of the medusa. In contrast, CheFoxO, whose sequence indicates regulation by the PI3-Kinase/PKB signalling pathway consistent with known roles in bilaterian developmental regulation, was detected throughout the Clytia life cycle. CheFoxO expression was enhanced in regions associated with growth control including larval poles, gonad and the margin of the medusa bell. These results support the idea that an early embryonic patterning system involving FoxB and FoxQ2 family genes has been evolutionary conserved and indicate that Fox family genes have also acquired distinct roles during other phases of the hydrozoan life cycle.

摘要

我们已经对从水螅虫(软水母目)半球螅(Clytia hemisphaerica)中鉴定出的四个编码含叉头框(‘Fox’)转录因子的基因的表达进行了表征。系统发育分析包括所有可用的非两侧对称动物的Fox序列,将这些基因归入B、Q2(两个基因)和O亚家族,并表明在刺胞动物/两侧对称动物的共同祖先中至少存在17个Fox亚家族,在刺胞动物谱系中有多次后续丢失。脊索动物的FoxB和FoxQ2A亚家族基因在早期胚胎中表现出极化表达。相应地,半球螅的CheFoxB表达在囊胚和原肠胚阶段定位于原肠形成部位(未来的口极)周围,而CheFoxQ2a在互补的反口区域表达,并在幼虫发育过程中维持。在幼虫内胚层区域以及水母的平衡囊、性腺和触手球中观察到CheFoxB有不同的后期表达结构域。半球螅的第二个FoxQ2基因CheFoxQ2b在胚胎、幼虫或水螅体中不表达,仅在水母的性腺中检测到。相比之下,CheFoxO的序列表明其受PI3激酶/PKB信号通路调控,这与已知的在两侧对称动物发育调控中的作用一致,在半球螅的整个生命周期中都能检测到。CheFoxO的表达在与生长控制相关的区域增强,包括幼虫极、性腺和水母伞缘。这些结果支持了这样一种观点,即涉及FoxB和FoxQ2家族基因的早期胚胎模式形成系统在进化上是保守的,并表明Fox家族基因在水螅虫生命周期的其他阶段也获得了不同的作用。

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