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The function of Notch signalling in segment formation in the crustacean Daphnia magna (Branchiopoda)

机译:甲壳动物Daphnia Magna(Branchiopoda)中缺口信号传导中缺口信号

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Ten years ago we showed for the first time that Notch signalling is required in segmentation in spiders, indicating the existence of similar mechanisms in arthropod and vertebrate segmentation. However, conflicting results in various arthropod groups hampered our understanding of the ancestral function of Notch in arthropod segmentation. Here we fill a crucial data gap in arthropods and analyse segmentation in a crustacean embryo. We analyse the expression of homologues of the Drosophila and vertebrate segmentation genes and show that members of the Notch signalling pathway are expressed at the same time as the pair-rule genes. Furthermore, inactivation of Notch signalling results in irregular boundaries of the odd-skipped-like expression domains and affects the formation of segments. In severe cases embryos appear unsegmented. We suggest two scenarios for the function of Notch signalling in segmentation. The first scenario agrees with a segmentation clock involving Notch signalling, while the second scenario discusses an alternative mechanism of Notch function which is integrated into a hierarchical segmentation cascade.
机译:十年前,我们首次展示了Notch信号传导在蜘蛛中的分割中需要,表明节肢动物和脊椎动物细分中的类似机制。然而,各种节肢动物群体的矛盾成果阻碍了我们对节肢动物细分陷波的祖先功能的理解。在这里,我们填补节肢动物和甲壳动物胚胎中的细分分析细分。我们分析了果蝇和脊椎动物分段基因的同源物的表达,并表明了陷波信号传导途径的成员与一对规则基因同时表达。此外,陷波信号传导的失活导致奇数跳过的表达域的不规则边界,并影响段的形成。在严重的情况下,胚胎出现不可思议。我们建议两种情况用于分割中陷波信令的功能。第一场景与涉及NOTCH信令的分割时钟同意,而第二种情况讨论了陷波功能的替代机制,其集成到分层分段级联中。

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