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首页> 外文期刊>Development Genes and Evolution >Expression patterns of leg genes in the mouthparts of the spider Cupiennius salei (Chelicerata: Arachnida)
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Expression patterns of leg genes in the mouthparts of the spider Cupiennius salei (Chelicerata: Arachnida)

机译:蜘蛛Cupiennius Salei的口袋中腿基因的表达模式(Chelicerata:Arachnida)

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摘要

The leg genes extradenticle, homothorax, dachshund, and Distal-less define three antagonistic developmental domains in the legs, but not in the antenna, of Drosophila. Here we report the expression patterns of these leg genes in the prosomal appendages of the spider Cupiennius salei. The prosoma of the spider bears six pairs of appendages: a pair of cheliceres, a pair of pedipalps, and four pairs of walking legs. Three types of appendages thus can be distinguished in the spider. We show here that in the pedipalp, the leg-like second prosomal appendage, the patterns are very similar to those in the legs themselves, indicating the presence of three antagonistic developmental domains in both appendage types. In contrast, in the chelicera, the fang-like first prosomal appendage, the patterns are different and there is no evidence for antagonistic domains. Together with data from Drosophila this suggests that leg-shaped morphology of arthropod appendages requires an underlying set of antagonistic developmental domains, whereas other morphologies (e.g. antenna, chelicera) may result from the loss of such antagonistic domains.
机译:腿部基因外囊性,Homothorax,达克斯猎犬和远端的腿部的三个拮抗发育域,但不在天线中的果蝇。在这里,我们在Spider Cupennius Salei的标准阑尾中报告了这些腿基因的表达模式。蜘蛛的探讨六对附属物:一对Cheliceres,一对钥匙和四对行走腿。因此,可以在蜘蛛中区分三种类型的附属物。我们在这里展示,在佩戴金,腿的第二个标题附件中,模式与腿本身的模式非常相似,表明两种附属类型中存在三个拮抗发育域。相比之下,在Chelicera中,芳皮的第一个解调阑尾,模式不同,没有拮抗域的证据。与来自果蝇的数据一起表明,节肢动物阑尾的腿形形态需要潜伏的拮抗发育结构域,而其他形态(例如天线,螯合物)可能是由于这种拮抗结构域的丧失引起的。

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