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Transcriptomic and functional analyses of the piRNA pathway in the Chagas disease vector Rhodnius prolixus

机译:南美锥虫病载体Rhodnius prolixus piRNA途径的转录组学和功能分析

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摘要

The piRNA pathway is a surveillance system that guarantees oogenesis and adult fertility in a range of animal species. The pathway is centered on PIWI clade Argonaute proteins and the associated small non-coding RNAs termed piRNAs. In this study, we set to investigate the evolutionary conservation of the piRNA pathway in the hemimetabolous insect Rhodnius prolixus. Our transcriptome profiling reveals that core components of the pathway are expressed during previtellogenic stages of oogenesis. Rhodnius’ genome harbors four putative piwi orthologs. We show that Rp-piwi2, Rp-piwi3 and Rp-ago3, but not Rp-piwi1 transcripts are produced in the germline tissues and maternally deposited in the mature eggs. Consistent with a role in Rhodnius oogenesis, parental RNAi against the Rp-piwi2, Rp-piwi3 and Rp-ago3 results in severe egg laying and female adult fertility defects. Furthermore, we show that the reduction of the Rp-piwi2 levels by parental RNAi disrupts oogenesis by causing a dramatic loss of trophocytes, egg chamber degeneration and oogenesis arrest. Intriguingly, the putative Rp-Piwi2 protein features a polyglutamine tract at its N-terminal region, which is conserved in PIWI proteins encoded in the genome of other Triatomine species. Together with R. prolixus, these hematophagous insects are primary vectors of the Chagas disease. Thus, our data shed more light on the evolution of the piRNA pathway and provide a framework for the development of new control strategies for Chagas disease insect vectors.
机译:piRNA途径是一个监视系统,可确保多种动物物种的卵子发生和成年繁殖。该途径集中在PIWI进化枝Argonaute蛋白和相关的称为piRNA的小的非编码RNA上。在这项研究中,我们着手研究半代谢昆虫昆虫Rhodnius prolixus中piRNA途径的进化保守性。我们的转录组分析表明,该途径的核心成分在卵子发生的前玻璃体形成阶段表达。 Rhodnius的基因组包含四个假定的Piwi直系同源物。我们显示,Rp-piwi2,Rp-piwi3和Rp-ago3,而不是Rp-piwi1转录物在种系组织中产生,并在母体中沉积在成熟卵中。与在Rhodnius卵子发生中的作用一致,针对Rp-piwi2,Rp-piwi3和Rp-ago3的亲本RNAi导致严重的卵生和女性成年生育力缺陷。此外,我们表明,由亲本RNAi引起的Rp-piwi2水平的降低通过引起营养细胞的急剧损失,卵子室变性和卵子发生停滞而破坏卵子发生。有趣的是,假定的Rp-Piwi2蛋白在其N端区域具有一个聚谷氨酰胺束,在其他Triatomine物种的基因组中编码的PIWI蛋白中是保守的。这些食血性昆虫与螺旋藻一起是南美锥虫病的主要媒介。因此,我们的数据为piRNA途径的进化提供了更多信息,并为南美锥虫病昆虫载体的新控制策略的开发提供了框架。

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