首页> 外文期刊>Journal of Insect Physiology >DsRNA-mediated targeting of ribosomal transcripts RPS6 and RPL26 induces long-lasting and significant reductions in fecundity of the vector Aedes aegypti
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DsRNA-mediated targeting of ribosomal transcripts RPS6 and RPL26 induces long-lasting and significant reductions in fecundity of the vector Aedes aegypti

机译:DsRNA介导的核糖体转录本RPS6和RPL26的靶向诱导埃及伊蚊载体的繁殖力持久且显着降低

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Ribosomal transcripts produce critical proteins that are involved in most cellular production processes. Targeting ribosomal transcripts has produced mortality in mites and ticks but the effect of ribosomal transcript knockdown has not been thoroughly examined in mosquitoes. We examine the effects of triggers targeting four ribosomal proteins (RP) transcripts. Although no significant mortality was observed after dsRNA microinjection and subsequent blood feeding, significant contrasts were observed on fecundity. Triggers targeting RPS6 and RPL26 effectively reduced gene expression but more importantly, reduced reproductive output by more than 96% and 91% at the first oviposition while triggers targeting RPL1 and RPS2 did not cause a reduction although gene expression was reduced. Significantly reduced fecundity continued through a second oviposition cycle in dsRPS6 and dsRPL26 cohorts, although the effect was not as strong. Relative gene expression levels confirmed specific transcript knockdown up to 20 days post-injection in mosquitoes that did not oviposit or produced reduced clutch sizes. Dissections at 36 h post-blood meal indicated defects in oocyte provisioning. The strong phenotype produced by d5RPS6 allowed us to examine the effects in various tissues as well as the dose response, trigger format, delivery method and trigger specificity in Aedes aegypti. Strong knockdown was observed in the abdomen and the ovaries. Greater than 50 ng of dsRPS6 significantly reduced fecundity but not when delivered in a sugar meal or as an siRNA. Similar bioassays with mutated d5RPS6 triggers indicates that up to three mismatches per possible siRNA are still effective in reducing fecundity. These studies indicate that while active and effective triggers can be developed for vector species, the lack of an efficient delivery method is the biggest barrier to use as a potential control method. Published by Elsevier Ltd.
机译:核糖体转录物产生关键蛋白,这些蛋白参与大多数细胞的生产过程。靶向核糖体转录物已在螨虫和壁虱中致死,但尚未在蚊子中彻底检查核糖体转录物敲低的影响。我们检查了针对四个核糖体蛋白(RP)转录本的触发器的影响。尽管在微量注射dsRNA和随后的血液喂养后未观察到明显的死亡率,但在生育力方面观察到显着的差异。靶向RPS6和RPL26的触发器有效地降低了基因表达,但更重要的是,在第一次产卵时,生殖产量降低了96%和91%以上,而靶向RPL1和RPS2的触发器虽然引起了基因表达的降低,但并未引起降低。尽管dsRPS6和dsRPL26研究组的产卵力不那么强,但其生殖力仍显着下降,直到第二个产卵周期。相对基因表达水平证实了在不产卵或未引起离合器尺寸减小的蚊子注射后长达20天的特异性转录本敲低。血后36小时的解剖表明卵母细胞供应不足。 d5RPS6产生的强表型使我们能够研究埃及伊蚊的各种组织以及剂量反应,触发方式,递送方法和触发特异性。在腹部和卵巢中观察到强烈的击倒。大于50 ng的dsRPS6会显着降低繁殖力,但不能以糖粉形式或siRNA形式提供。带有突变的d5RPS6触发器的类似生物测定法表明,每种可能的siRNA多达三个错配仍可有效降低繁殖力。这些研究表明,虽然可以为媒介物种开发出主动和有效的触发因素,但缺乏有效的传递方法是用作潜在控制方法的最大障碍。由Elsevier Ltd.发布

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