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在间接发育的半索动物黄殖翼柱头虫中,中胚层和腹侧命运的形成需要节点信号传导,但背侧命运的形成则不需要。

Nodal signaling is required for mesodermal and ventral but not for dorsal fates in the indirect developing hemichordate, Ptychodera flava.

作者信息

Röttinger Eric, DuBuc Timothy Q, Amiel Aldine R, Martindale Mark Q

机构信息

Université Nice Sophia Antipolis, IRCAN, UMR 7284, 06107 Nice, France CNRS, IRCAN, UMR 7284, 06107 Nice, France INSERM, IRCAN, U1081, 06107 Nice, France

The Whitney Marine Laboratory for Marine Science, University of Florida, St. Augustine, FL 32080-8610, USA.

出版信息

Biol Open. 2015 May 15;4(7):830-42. doi: 10.1242/bio.011809.

Abstract

Nodal signaling plays crucial roles in vertebrate developmental processes such as endoderm and mesoderm formation, and axial patterning events along the anteroposterior, dorsoventral and left-right axes. In echinoderms, Nodal plays an essential role in the establishment of the dorsoventral axis and left-right asymmetry, but not in endoderm or mesoderm induction. In protostomes, Nodal signaling appears to be involved only in establishing left-right asymmetry. Hence, it is hypothesized that Nodal signaling has been co-opted to pattern the dorsoventral axis of deuterostomes and for endoderm, mesoderm formation as well as anteroposterior patterning in chordates. Hemichordata, together with echinoderms, represent the sister taxon to chordates. In this study, we analyze the role of Nodal signaling in the indirect developing hemichordate Ptychodera flava. In particular, we show that during gastrulation nodal transcripts are detected in a ring of cells at the vegetal pole that gives rise to endomesoderm and in the ventral ectoderm at later stages of development. Inhibition of Nodal function disrupts dorsoventral fates and also blocks formation of the larval mesoderm. Interestingly, molecular analysis reveals that only mesodermal, apical and ventral gene expression is affected while the dorsal side appears to be patterned correctly. Taken together, this study suggests that the co-option of Nodal signaling in mesoderm formation and potentially in anteroposterior patterning has occurred prior to the emergence of chordates and that Nodal signaling on the ventral side is uncoupled from BMP signaling on the dorsal side, representing a major difference from the molecular mechanisms of dorsoventral patterning events in echinoderms.

摘要

节点信号传导在脊椎动物发育过程中起着关键作用,如内胚层和中胚层的形成,以及沿前后轴、背腹轴和左右轴的轴向模式形成事件。在棘皮动物中,节点信号传导在背腹轴的建立和左右不对称中起着重要作用,但在内胚层或中胚层诱导中不起作用。在原口动物中,节点信号传导似乎仅参与建立左右不对称。因此,有人推测节点信号传导已被用于构建后口动物的背腹轴以及脊索动物的内胚层、中胚层形成和前后模式形成。半索动物与棘皮动物一起,代表了脊索动物的姐妹分类群。在这项研究中,我们分析了节点信号传导在间接发育的半索动物黄瘤虫中的作用。特别是,我们发现,在原肠胚形成过程中,在植物极的一圈细胞中检测到节点转录本,这些细胞产生内胚层中胚层,在发育后期的腹侧外胚层中也有检测到。抑制节点功能会破坏背腹命运,也会阻止幼虫中胚层的形成。有趣的是,分子分析表明,只有中胚层、顶端和腹侧基因表达受到影响,而背侧似乎模式正确。综上所述,这项研究表明,在脊索动物出现之前,节点信号传导在中胚层形成以及可能在前后模式形成中就已被采用,并且腹侧的节点信号传导与背侧的骨形态发生蛋白信号传导解偶联,这代表了与棘皮动物背腹模式形成事件分子机制的主要差异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a016/4571091/3003060b54bd/biolopen-4-011809-g1.jpg

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