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Functional analyses in the milkweed bug Oncopeltus fasciatus (Hemiptera) support a role for Wnt signaling in body segmentation but not appendage development

机译:乳草臭虫Oncopeltus fasciatus(Hemiptera)中的功能分析支持Wnt信号在人体分割中的作用,但不支持肢体发育

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Specification of the proximal-distal (PD) axis of insect appendages is best understood in Drosophila melanogaster, where conserved signaling molecules encoded by the genes decapentaplegic (dpp) and wingless (wg) play key roles. However, the development of appendages from imaginal discs as in Drosophila is a derived state, while more basal insects produce appendages from embryonic limb buds. Therefore, the universality of the Drosophila limb PD axis specification mechanism has been debated since dpp expression in more basal insect species differs dramatically from Drosophila. Here, we test the function of Writ signaling in the development of the milkweed bug Oncopeltus fasciatus, a species with the basal state of appendage development from limb buds. RNA interference of wg and pangolin (pan) produce defects in the germband and eyes, but not in the appendages. Distal-less and dachshund, two genes regulated by Wg signaling in Drosophila and expressed in specific PD domains along the limbs of both species, are expressed normally in the limbs of pan-depleted Oncopeltus embryos. Despite these apparently paradoxical results, Armadillo protein, the transducer of Wnt signaling, does not accumulate properly in the nuclei of cells in the legs of pan-depleted embryos. In contrast, engrailed RNAi in Oncopeltus produces cuticular and appendage defects similar to Drosophila. Therefore, our data suggest that Wg signaling is functionally conserved in the development of the germband, while it is not essential in the specification of the limb PD axis in Oncopeltus and perhaps basal insects. (c) 2005 Elsevier Inc. All rights reserved.
机译:在果蝇中最好地了解昆虫附肢的近-远端(PD)轴的规格,其中由十足瘫痪(dpp)和无翅(wg)基因编码的保守信号分子起关键作用。但是,像果蝇一样,假想盘的附属物的发育是衍生状态,而更多的基础昆虫从胚胎肢芽中产生附属物。因此,果蝇肢体PD轴规范机制的普遍性一直存在争议,因为更多基础昆虫物种中的dpp表达与果蝇截然不同。在这里,我们测试了令状信号在乳草臭虫Oncopeltus fasciatus发育中的功能,该物种具有从肢芽萌芽的基础附属状态。 wg和穿山甲(pan)的RNA干扰会在种皮和眼睛中产生缺陷,但不会在附肢中产生缺陷。远足和腊肠,这两个基因在果蝇中受Wg信号调节,并在两个物种的肢体的特定PD结构域中表达,通常在泛耗尽的Oncopeltus胚胎的肢体中表达。尽管有这些明显的自相矛盾的结果,但Wnt信号转导子Armadillo蛋白却不能在聚全脂胚胎腿中的细胞核中适当地积累。相比之下,盘古的RNAi产生类似于果蝇的表皮和附肢缺陷。因此,我们的数据表明,Wg信号在生殖带的发育过程中在功能上是保守的,而在Oncopeltus和也许是基础昆虫的肢体PD轴规范中并不是必需的。 (c)2005 Elsevier Inc.保留所有权利。

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