首页> 外文期刊>Developmental biology >Ventralization of an indirect developing hemichordate by NiCl suggests a conserved mechanism of dorso-ventral (D/V) patterning in Ambulacraria (hemichordates and echinoderms).
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Ventralization of an indirect developing hemichordate by NiCl suggests a conserved mechanism of dorso-ventral (D/V) patterning in Ambulacraria (hemichordates and echinoderms).

机译:NiCl间接显影的半水合物的腹膜化提示,Ambulacraria(半翅类和棘皮类动物)的背腹(D / V)模式保守。

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摘要

One of the earliest steps in embryonic development is the establishment of the future body axes. Morphological and molecular data place the Ambulacraria (echinoderms and hemichordates) within the Deuterostomia and as the sister taxon to chordates. Extensive work over the last decades in echinoid (sea urchins) echinoderms has led to the characterization of gene regulatory networks underlying germ layer specification and axis formation during embryogenesis. However, with the exception of recent studies from a direct developing hemichordate (Saccoglossus kowalevskii), very little is known about the molecular mechanism underlying early hemichordate development. Unlike echinoids, indirect developing hemichordates retain the larval body axes and major larval tissues after metamorphosis into the adult worm. In order to gain insight into dorso-ventral (D/V) patterning, we used nickel chloride (NiCl), a potent ventralizing agent on echinoderm embryos, on the indirect developing enteropneust hemichordate, Ptychodera flava. Our present study shows that NiCl disrupts the D/V axis and induces formation of a circumferential mouth when treated before the onset of gastrulation. Molecular analysis, using newly isolated tissue-specific markers, shows that the ventral ectoderm is expanded at expense of dorsal ectoderm in treated embryos, but has little effect on germ layer or anterior-posterior markers. The resulting ventralized phenotype, the effective dose, and the NiCl sensitive response period of Ptychodera flava, is very similar to the effects of nickel on embryonic development described in larval echinoderms. These strong similarities allow one to speculate that a NiCl sensitive pathway involved in dorso-ventral patterning may be shared between echinoderms, hemichordates and a putative ambulacrarian ancestor. Furthermore, nickel treatments ventralize the direct developing hemichordate, S. kowalevskii indicating that a common pathway patterns both larval and adult body plans of the ambulacrarian ancestor and provides insight in to the origin of the chordate body plan.
机译:胚胎发育的最早步骤之一是建立未来的身体轴。形态学和分子数据将无腕动物(棘皮动物和半水龙虾)放置在申命者体内,并作为cho索的姊妹分类群。在过去几十年中,在棘突类棘皮动物皮层动物中进行了广泛的工作,从而导致了在胚发生过程中基于细菌层规格和轴形成的基因调控网络的表征。但是,除了最近对直接开发的半酸盐的研究(Saccoglossus kowalevskii)外,对早期半酸盐发展的分子机制了解甚少。不像类chin碱,间接发育的半酸盐在变态为成虫后保留了幼虫的体轴和主要的幼虫组织。为了深入了解背腹(D / V)图案,我们在间接发育的肠铝血半酸盐,Ptychodera flava上使用了氯化镍(NiCl),这是一种对棘皮动物胚胎有效的通风剂。我们目前的研究表明,NiCl破坏D / V轴并在开始胃化之前进行处理会诱导形成圆周口。使用新分离的组织特异性标记物进行的分子分析表明,腹侧外胚层在处理过的胚胎中以背侧外胚层为代价而扩展,但对胚层或前后标记几乎没有影响。由此产生的腹侧表型,有效剂量和黄萎病菌的NiCl敏感反应期与镍对幼虫棘皮动物胚胎发育的影响非常相似。这些强烈的相似性使我们推测,棘皮动物,半血酸盐和假定的手足动物祖先之间可能存在与背腹模式有关的NiCl敏感途径。此外,镍处理使直接发育的半水藻S. kowalevskii腹侧空腹,表明共同的途径可以改变无手cr祖先的幼体和成年人体计划,并提供了对含碳酸盐人体计划起源的见识。

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