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Toll signals regulate dorsal–ventral patterning and anterior–posterior placement of the embryo in the hemipteran Rhodnius prolixus

机译:通行费信号调节半足Rhodnius prolixus胚胎的背腹模式和胚胎的前后位置

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Background Insect embryonic dorso-ventral patterning depends greatly on two pathways: the Toll pathway and the Bone Morphogenetic Protein pathway. While the relative contribution of each pathway has been investigated in holometabolous insects, their role has not been explored in insects with a hemimetabolous type of development. The hemimetabolous insect Rhodnius prolixus, an important vector of Chagas disease in the Americas, develops from an intermediate germ band and displays complex movements during katatrepsis that are not observed in other orders. However, little is known about the molecular events that regulate its embryogenesis. Here we investigate the expression and function of genes potentially involved in the initial patterning events that establish the embryonic dorso-ventral axis in this hemipteran. Results We establish a staging system for early embryogenesis that allows us to correlate embryo morphology with gene expression profiles. Using this system, we investigate the role of Toll pathway genes during embryogenesis. Detailed analyses of gene expression throughout development, coupled with functional analyses using parental RNA interference, revealed that maternal Toll is required to establish germ layers along the dorso-ventral axis and for embryo placement along the anterior-posterior axis. Interestingly, knockdown of the Toll pathway effector Rp-dorsal appears to regulate the expression of the Bone Morphogenetic Protein antagonist Rp-short-gastrulation. Conclusions Our results indicate that Toll signals are the initiating event in dorso-ventral patterning during Rhodnius embryogenesis, and this is the first report of a conserved role for Toll in a hemipteran. Furthermore, as Rp-dorsal RNA interference generates anteriorly misplaced embryos, our results indicate a novel role for Toll signals in establishment of the anterior-posterior axis in Rhodnius.
机译:背景技术昆虫胚胎背腹模式在很大程度上取决于两个途径:Toll途径和骨形态发生蛋白途径。虽然已经研究了全代谢昆虫中每种途径的相对贡献,但是在具有半代谢类型发育的昆虫中尚未探索其作用。杂种昆虫Rhodnius prolixus是美洲恰加斯病的重要媒介,它从中间细菌带发育而来,在片状吸虫期间表现出复杂的运动,而在其他阶中则没有观察到。然而,关于调节其胚胎发生的分子事件知之甚少。在这里,我们研究了潜在的初始模式事件中涉及的基因的表达和功能,该事件在该半足动物中建立了胚胎背腹轴。结果我们建立了早期胚胎发生的分期系统,使我们能够将胚胎形态与基因表达谱相关联。使用该系统,我们调查了Toll通路基因在胚胎发生过程中的作用。对整个发育过程中基因表达的详细分析,再加上使用亲本RNA干扰的功能分析,揭示了母本Toll需要沿着背腹轴建立胚层以及沿着前后轴放置胚胎。有趣的是,敲低Toll通路效应子Rp背似乎可以调节骨形态发生蛋白拮抗剂Rp短胃泌素的表达。结论我们的结果表明Toll信号是Rhodnius胚胎发生过程中背腹模式的起始事件,这是Toll在半足动物中保守作用的首次报道。此外,由于Rp背RNA干扰会产生前位错位的胚胎,我们的结果表明Toll信号在Rhodnius前后轴建立中的新作用。

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