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粗壮水蛭(环节动物门;环带纲;蛭纲;舌蛭科)中Notch类基因在体节干细胞和体节起始细胞中的表达特征

Characterization of Notch-class gene expression in segmentation stem cells and segment founder cells in Helobdella robusta (Lophotrochozoa; Annelida; Clitellata; Hirudinida; Glossiphoniidae).

作者信息

Rivera Ajna S, Gonsalves Foster C, Song Mi Hye, Norris Brian J, Weisblat David A

机构信息

Department of Molecular and Cell Biology, 385 LSA University of California, Berkeley, CA 94720-3200, USA.

出版信息

Evol Dev. 2005 Nov-Dec;7(6):588-99. doi: 10.1111/j.1525-142X.2005.05062.x.

Abstract

To understand the evolution of segmentation, we must compare segmentation in all three major groups of eusegmented animals: vertebrates, arthropods, and annelids. The leech Helobdella robusta is an experimentally tractable annelid representative, which makes segments in anteroposterior progression from a posterior growth zone consisting of 10 identified stem cells. In vertebrates and some arthropods, Notch signaling is required for normal segmentation and functions via regulation of hes-class genes. We have previously characterized the expression of an hes-class gene (Hro-hes) during segmentation in Helobdella, and here, we characterize the expression of an H. robusta notch homolog (Hro-notch) during this process. We find that Hro-notch is transcribed in the segmental founder cells (blast cells) and their stem-cell precursors (teloblasts), as well as in other nonsegmental tissues. The mesodermal and ectodermal lineages show clear differences in the levels of Hro-notch expression. Finally, Hro-notch is shown to be inherited by newly born segmental founder cells as well as transcribed by them before their first cell division.

摘要

为了解体节形成的进化过程,我们必须比较真分体节动物的三大主要类群:脊椎动物、节肢动物和环节动物的体节形成情况。强壮水蛭(Helobdella robusta)是一种在实验上易于处理的环节动物代表,它从一个由10个已确定的干细胞组成的后生长区按前后顺序形成体节。在脊椎动物和一些节肢动物中,Notch信号通路对于正常的体节形成是必需的,并且通过调控hes类基因发挥作用。我们之前已经描述了强壮水蛭在体节形成过程中一个hes类基因(Hro-hes)的表达情况,在此,我们描述强壮水蛭Notch同源基因(Hro-notch)在此过程中的表达情况。我们发现Hro-notch在体节起始细胞(胚细胞)及其干细胞前体(端细胞)以及其他非体节组织中都有转录。中胚层和外胚层谱系在Hro-notch表达水平上表现出明显差异。最后,研究表明Hro-notch由新生成的体节起始细胞继承,并且在它们第一次细胞分裂之前就被它们转录。

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