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Ilyanassa Notch signaling implicated in dynamic signaling between all three germ layers

机译:Ilyanassa Notch信号传导与所有三个细菌层之间的动态信号传导有关

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Two cells (3D and 4d) in the mud snail Ilyanassa obsolete function to induce proper cell fate. In this study, we provide support for the hypothesis that Notch signaling in Ilyanassa obsolete functions in inductive signaling at multiple developmental stages.The expression patterns of Notch, Delta and Suppressor of Hairless (SuH) are consistent with a function for Notch signaling in endoderm formation, the function of 3D/4d and the sublineages of 4d. Veligers treated with DAPT show a range of defects that include a loss of endodermal structures, and varying degrees of loss of targets of 4d inductive signaling. Veligers that result from injection of Ilyanassa Delta siRNAi in general mimic the defects observed in the DAPT treated larvae.The most severe DAPT phenotypes mimic early ablations of 4d. However, the early specification of 4d itself appears normal and MAPK activation in both 3D/4d and the micromeres, which are known to activate MAPK as a result of 3D/4d induction, are normal in DAPT treated larvae. Treating larvae at successively later timepoints with DAPT suggests that Notch/Delta signaling is not only required during early 4d inductive signaling, but during subsequent stages of cell fate determination as well. Based on our results, combined with previous reports implicating the endoderm in maintaining induced fate specification in Ilyanassa, we propose a speculative model that Notch signaling is required to specify endoderm fates and 4d sublineages, as well as to maintain cell fates induced by 4d.
机译:泥蜗牛Ilyanassa中的两个细胞(3D和4d)已过时,无法诱导适当的细胞命运。在这项研究中,我们为Ilyanassa中的Notch信号在多个发育阶段的诱导信号中过时的功能提供了支持.Notch,Delta和无毛抑制子(SuH)的表达模式与内胚层形成中Notch信号的功能一致,3D / 4d的功能和4d的子系。用DAPT处理的Veliger显示出一系列缺陷,其中包括内胚层结构的缺失以及4d诱导信号转导靶的不同程度的缺失。通常通过注射Ilyanassa Delta siRNAi产生的Veliger模仿在DAPT处理的幼虫中观察到的缺陷。最严重的DAPT表型模仿4d的早期消融。但是,4d本身的早期规格似乎正常,而在3D / 4d和被3PT / 4d诱导激活MAPK的微粒中,MAPK激活在DAPT处理的幼虫中是正常的。在DAPT的后续时间点处理幼虫表明,Notch / Delta信号不仅在早期4d诱导信号期间需要,而且在随后的细胞命运确定阶段也需要。根据我们的研究结果,结合先前的报道暗示内胚层维持Ilyanassa中诱导的命运规范,我们提出了一个推测模型,要求Notch信号来指定内胚层命运和4d亚谱,以及维持4d引起的细胞命运。

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