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海滨球马陆(Strigamia maritima)的体节分割级联反应:Notch信号通路和成对规则基因同源物的作用

The segmentation cascade in the centipede Strigamia maritima: involvement of the Notch pathway and pair-rule gene homologues.

作者信息

Chipman Ariel D, Akam Michael

机构信息

University Museum of Zoology and Department of Zoology, Downing St., Cambridge CB2 3EJ, UK.

出版信息

Dev Biol. 2008 Jul 1;319(1):160-9. doi: 10.1016/j.ydbio.2008.02.038. Epub 2008 Mar 4.

Abstract

The centipede Strigamia maritima forms all of its segments during embryogenesis. Trunk segments form sequentially from an apparently undifferentiated disk of cells at the posterior of the germ band. We have previously described periodic patterns of gene expression in this posterior disc that precede overt differentiation of segments, and suggested that a segmentation oscillator may be operating in the posterior disc. We now show that genes of the Notch signalling pathway, including the ligand Delta, and homologues of the Drosophila pair-rule genes even-skipped and hairy, show periodic expression in the posterior disc, consistent with their involvement in, or regulation by, such an oscillator. These genes are expressed in a pattern of apparently expanding concentric rings around the proctodeum, which become stripes at the base of the germ band where segments are emerging. In this transition zone, these primary stripes define a double segment periodicity: segmental stripes of engrailed expression, which mark the posterior of each segment, arise at two different phases of the primary pattern. Delta and even-skipped are also activated in secondary stripes that intercalate between primary stripes in this region, further defining the single segment repeat. These data, together with observations that Notch mediated signalling is required for segment pattern formation in other arthropods, suggest that the ancestral arthropod segmentation cascade may have involved a segmentation oscillator that utilised Notch signalling.

摘要

海蜈蚣Strigamia maritima在胚胎发育过程中形成其所有体节。躯干体节从胚带后部一个明显未分化的细胞盘依次形成。我们之前描述过在这个后部圆盘状结构中,在体节明显分化之前基因表达的周期性模式,并提出在后部圆盘中可能存在一个分节振荡器。我们现在表明,Notch信号通路的基因,包括配体Delta,以及果蝇成对规则基因even-skipped和hairy的同源物,在后部圆盘中呈现周期性表达,这与它们参与这样一个振荡器或受其调控一致。这些基因以围绕原肛的明显扩展的同心环模式表达,在胚带基部体节出现的地方这些同心环变成条纹。在这个过渡区,这些初级条纹定义了双体节周期性:标记每个体节后部的engrailed表达的节段条纹,在初级模式的两个不同阶段出现。Delta和even-skipped在该区域插入初级条纹之间的次级条纹中也被激活,进一步定义了单个体节重复。这些数据,连同在其他节肢动物中Notch介导的信号传导是体节模式形成所必需的观察结果,表明节肢动物祖先的分节级联反应可能涉及一个利用Notch信号传导的分节振荡器。

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