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首页> 外文期刊>Journal of pest science >Spray method application of transdermal dsRNA delivery system for efficient gene silencing and pest control on soybean aphid Aphis glycines
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Spray method application of transdermal dsRNA delivery system for efficient gene silencing and pest control on soybean aphid Aphis glycines

机译:透皮DSRNA递送系统在大豆蚜虫术中有效基因沉默和害虫防治的应用

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RNA interference (RNAi) has been recognized as a novel and safe strategy in pest management due to its high sequence-dependent specificity. However, the existing dsRNA delivery methods largely restrict the application of the RNAi-based pest management strategy; thus, we previously constructed a nanocarrier-based transdermal dsRNA delivery system on the soybean aphid Aphis glycines with the help of nanocarrier and detergent. In the current study, we improved our transdermal dsRNA delivery system with a smaller and cheaper nanocarrier to investigate the efficacy of spraying aphid-infested soybean seedlings to apply our RNA pesticide. A dsRNA/nanocarrier/detergent formulation was performed, and the dsRNA could penetrate the aphid body wall within 4 h with the help of nanocarrier through the topical application. Four potential RNAi target genes (TREH, ATPD, ATPE and CHS1) were selected and cloned, and their dsRNA fragments were synthesized and tested through the transdermal dsRNA delivery system. The delivered dsRNA efficiently silenced the target gene expression with the knockdown effects ranging from 86.86 to 58.87% and resulted in a high mortality up to 81.67% (dsATPD + dsATPE) through the topical application, when through the spray method, with the highest percent mortality of 78.50% (dsATPD + dsCHS1). Our novel transdermal dsRNA delivery system not only provides a powerful tool for gene functional analysis in laboratory, but also shows a great potential for the pest management in the field, which will promote the practice and development of RNAi-based pest management.
机译:RNA干扰(RNAi)被认为是由于其高序列依赖性特异性的害虫管理中的一种新颖和安全的策略。然而,现有的DSRNA递送方法在很大程度上限制了基于RNAI的害虫管理策略的应用;因此,在纳米载体和洗涤剂的帮助下,我们以前在大豆蚜虫蚜虫上构建了基于纳米载体的透皮DSRNA递送系统。在目前的研究中,我们改善了用较小且更便宜的纳米载体改善了我们的透皮DSRNA递送系统,以研究喷涂蚜虫侵袭的大豆幼苗的功效应用我们的RNA农药。进行DSRNA /纳米载波/洗涤剂配方,并且DSRNA通过局部施用在纳米载体的帮助下可以在4小时内穿透蚜虫体壁。选择并克隆四个潜在的RNAi靶基因(Tree,ATPD,ATPE和CHS1),并通过透皮DSRNA递送系统合成并测试其DSRNA片段。递送的DSRNA有效地沉默于敲低86.86〜58.87%的敲低效应,并通过喷雾方法的局部应用导致高达81.67%(DSATPD + DSATPE)的高死亡率,当时的死亡率最高78.50%(DSATPD + DSCHS1)。我们的新型透皮DSRNA递送系统不仅为实验室提供了一种强大的基因功能分析工具,而且还对该领域的害虫管理显示出巨大潜力,这将促进基于RNAi的害虫管理的实践和发展。

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