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基因表达分析表明,Delta/Notch信号通路不参与栉蚕的体节形成。

Gene expression analysis reveals that Delta/Notch signalling is not involved in onychophoran segmentation.

作者信息

Janssen Ralf, Budd Graham E

机构信息

Department of Earth Sciences, Palaeobiology, Uppsala University, Villavägen 16, 75236, Uppsala, Sweden.

出版信息

Dev Genes Evol. 2016 Mar;226(2):69-77. doi: 10.1007/s00427-016-0529-4. Epub 2016 Mar 2.

Abstract

Delta/Notch (Dl/N) signalling is involved in the gene regulatory network underlying the segmentation process in vertebrates and possibly also in annelids and arthropods, leading to the hypothesis that segmentation may have evolved in the last common ancestor of bilaterian animals. Because of seemingly contradicting results within the well-studied arthropods, however, the role and origin of Dl/N signalling in segmentation generally is still unclear. In this study, we investigate core components of Dl/N signalling by means of gene expression analysis in the onychophoran Euperipatoides kanangrensis, a close relative to the arthropods. We find that neither Delta or Notch nor any other investigated components of its signalling pathway are likely to be involved in segment addition in onychophorans. We instead suggest that Dl/N signalling may be involved in posterior elongation, another conserved function of these genes. We suggest further that the posterior elongation network, rather than classic Dl/N signalling, may be in the control of the highly conserved segment polarity gene network and the lower-level pair-rule gene network in onychophorans. Consequently, we believe that the pair-rule gene network and its interaction with Dl/N signalling may have evolved within the arthropod lineage and that Dl/N signalling has thus likely been recruited independently for segment addition in different phyla.

摘要

Delta/Notch(Dl/N)信号通路参与脊椎动物体节形成过程的基因调控网络,在环节动物和节肢动物中可能也有涉及,这引发了一种假说,即体节形成可能在两侧对称动物的最后一个共同祖先中就已经演化出来。然而,由于在研究充分的节肢动物中存在看似相互矛盾的结果,Dl/N信号通路在体节形成中的作用和起源总体上仍不明确。在本研究中,我们通过对与节肢动物亲缘关系较近的栉蚕Euperipatoides kanangrensis进行基因表达分析,来研究Dl/N信号通路的核心成分。我们发现,Delta或Notch及其信号通路的任何其他研究成分都不太可能参与栉蚕的体节添加。相反,我们认为Dl/N信号通路可能参与后端延伸,这是这些基因的另一个保守功能。我们进一步提出,后端延伸网络而非经典的Dl/N信号通路,可能在控制栉蚕中高度保守的体节极性基因网络和较低层次的成对规则基因网络。因此,我们认为成对规则基因网络及其与Dl/N信号通路的相互作用可能是在节肢动物谱系中演化而来的,并且Dl/N信号通路因此可能在不同门中被独立招募用于体节添加。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7efd/4819559/bd0210e5c5d0/427_2016_529_Fig1_HTML.jpg

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