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海星多棘海盘车中节点表达与背腹轴的特化及组织模式形成的关系。

Relation of Nodal expression to the specification of the dorsal-ventral axis and tissue patterning in the starfish Patiria pectinifera.

作者信息

Sasaki Hiroki, Kominami Tetsuya

机构信息

Department of Chemistry and Biology, Graduate School of Science and Engineering, Ehime University, Matsuyama, 790-8577, Japan.

Oita Marine Palace Aquarium "UMITAMAGO", Takasaki-yama-shita-kaigan, Oita, 870-0802, Japan.

出版信息

Dev Growth Differ. 2017 Dec;59(9):724-740. doi: 10.1111/dgd.12409. Epub 2017 Nov 2.

Abstract

In this study, we attempted to reveal fundamental aspects of starfish embryogenesis, particularly embryonic axis specification or determination, in Patiria pectinifera. We first cloned PpNodal, which is known to play an important role in the specification of the embryonic axis in a wide range of animals, and studied its expression profile. PpNodal expression was first detected at the mid-blastula stage and showed a single peak around the onset of gastrulation. These features of Nodal expression were shifted to later stages by several hours, compared with those of sea urchin embryos. After the gastrulation started, the expression level became gradually lowered up to the early bipinnaria stage, while the expression level became drastically lowered in sea urchin embryos during gastrulation. The localized Nodal expression in the presumptive oral region was not observed in starfish embryos, unlike in sea urchin embryos. Furthermore, SB431542, an inhibitor of Nodal receptor, did not affect the formation of the DV axis, although it caused the loss of left-right asymmetry. In contrast to this, SB525334, a specific inhibitor of TGF-beta receptor, caused the complete loss of the DV axis. Thus, the usage of signaling molecules during early embryogenesis likely varies among echinoderm classes.

摘要

在本研究中,我们试图揭示多棘海盘车海星胚胎发育的基本方面,特别是胚胎轴的特化或决定过程。我们首先克隆了PpNodal,已知其在多种动物的胚胎轴特化中发挥重要作用,并研究了其表达模式。PpNodal的表达最早在囊胚中期被检测到,并在原肠胚形成开始时出现一个峰值。与海胆胚胎相比,Nodal表达的这些特征向后推迟了几个小时。原肠胚形成开始后,其表达水平逐渐降低,直至早期双羽幼虫阶段,而海胆胚胎在原肠胚形成过程中表达水平急剧下降。与海胆胚胎不同,在海星胚胎中未观察到在预定口部区域的局部Nodal表达。此外,Nodal受体抑制剂SB431542虽然导致左右不对称性丧失,但并不影响背腹轴的形成。与此相反,TGF-β受体特异性抑制剂SB525334导致背腹轴完全丧失。因此,在早期胚胎发育过程中信号分子的使用情况可能在棘皮动物各纲之间存在差异。

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