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腕足动物中的同源异型框基因表达:Not和Cdx在体轴模式形成、神经发生及胚层特化中的作用

Homeobox gene expression in Brachiopoda: the role of Not and Cdx in bodyplan patterning, neurogenesis, and germ layer specification.

作者信息

Altenburger Andreas, Martinez Pedro, Wanninger Andreas

机构信息

University of Copenhagen, Natural History Museum of Denmark, Zoological Museum, Universitetsparken, Copenhagen Ø, Denmark.

出版信息

Gene Expr Patterns. 2011 Oct;11(7):427-36. doi: 10.1016/j.gep.2011.07.001. Epub 2011 Jul 14.

Abstract

The molecular control that underlies brachiopod ontogeny is largely unknown. In order to contribute to this issue we analyzed the expression pattern of two homeobox containing genes, Not and Cdx, during development of the rhynchonelliform (i.e., articulate) brachiopod Terebratalia transversa. Not is a homeobox containing gene that regulates the formation of the notochord in chordates, while Cdx (caudal) is a ParaHox gene involved in the formation of posterior tissues of various animal phyla. The T. transversa homolog, TtrNot, is expressed in the ectoderm from the beginning of gastrulation until completion of larval development, which is marked by a three-lobed body with larval setae. Expression starts at gastrulation in two areas lateral to the blastopore and subsequently extends over the animal pole of the gastrula. With elongation of the gastrula, expression at the animal pole narrows to a small band, whereas the areas lateral to the blastopore shift slightly towards the future anterior region of the larva. Upon formation of the three larval body lobes, TtrNot expressing cells are present only in the posterior part of the apical lobe. Expression ceases entirely at the onset of larval setae formation. TtrNot expression is absent in unfertilized eggs, in embryos prior to gastrulation, and in settled individuals during and after metamorphosis. Comparison with the expression patterns of Not genes in other metazoan phyla suggests an ancestral role for this gene in gastrulation and germ layer (ectoderm) specification with co-opted functions in notochord formation in chordates and left/right determination in ambulacrarians and vertebrates. The caudal ortholog, TtrCdx, is first expressed in the ectoderm of the gastrulating embryo in the posterior region of the blastopore. Its expression stays stable in that domain until the blastopore is closed. Thereafter, the expression is confined to the ventral portion of the mantle lobe in the fully developed larva. No TtrCdx expression is detectable in the juvenile after metamorphosis. This expression of TtrCdx is congruent with findings in other metazoans, where genes belonging to the Cdx/caudal family are predominantly localized in posterior domains during gastrulation. Later in development this gene will play a fundamental role in the formation of posterior tissues.

摘要

腕足动物个体发育的分子调控机制在很大程度上尚不明确。为了探究这一问题,我们分析了两个含同源异型框基因Not和Cdx在铰合纲(即有铰)腕足动物横裂贝发育过程中的表达模式。Not是一个含同源异型框基因,在脊索动物中调控脊索的形成,而Cdx(尾型)是一个副同源框基因,参与多种动物门类后体组织的形成。横裂贝的同源基因TtrNot,从原肠胚形成开始直至幼虫发育完成,在外胚层中均有表达,幼虫发育完成时的标志是具有幼虫刚毛的三叶形身体。表达始于原肠胚形成期,在胚孔两侧的两个区域出现,随后延伸至原肠胚的动物极。随着原肠胚的伸长,动物极的表达区域缩小为一条窄带,而胚孔两侧的区域则略微向幼虫未来的前部移动。在幼虫的三个体叶形成后,表达TtrNot的细胞仅存在于顶叶的后部。在幼虫刚毛形成开始时,表达完全停止。未受精卵、原肠胚形成前的胚胎以及变态过程中及变态后的定居个体中均未检测到TtrNot的表达。与其他后生动物门类中Not基因的表达模式进行比较表明,该基因在原肠胚形成和胚层(外胚层)特化过程中具有祖先功能,在脊索动物的脊索形成以及棘皮动物和脊椎动物的左右决定中具有被征募的功能。尾型直系同源基因TtrCdx首先在原肠胚形成期胚胎的胚孔后部外胚层中表达。其表达在该区域保持稳定,直至胚孔关闭。此后,在完全发育的幼虫中,表达局限于外套叶的腹侧部分。变态后的幼体中未检测到TtrCdx的表达。TtrCdx的这种表达与其他后生动物的研究结果一致,在其他后生动物中,属于Cdx/尾型家族的基因在原肠胚形成期主要定位于后部区域。在发育后期,该基因将在后体组织的形成中发挥重要作用。

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