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首页> 外文期刊>Journal of Economic Entomology >Screening of 57 Candidate Double-Stranded RNAs for Insecticidal Activity Against the Pest Termite Reticulitermes flavipes (Isoptera: Rhinotermitidae)
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Screening of 57 Candidate Double-Stranded RNAs for Insecticidal Activity Against the Pest Termite Reticulitermes flavipes (Isoptera: Rhinotermitidae)

机译:筛选57候选双链RNA对害虫活性杀虫活性的杀虫活性Flavipes(Isoptera:rhinoterdae)

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摘要

RNA interference insecticides have received increasing attention in recent years due to their classification as a reduced-risk biopesticide and their proposed faster path to registration compared with conventional synthetic insecticides. The goal of this study was to synthesize and compare efficacy of 62 double-stranded RNAs (dsRNAs) from 31 target genes against the pest termite species, Reticulitermes flavipes (Kollar) (Isoptera: Rhinotermitidae). Fifty-seven dsRNAs of similar to 125 base pairs each were successfully synthesized. First-tier screens using a combination immersion/feeding assay revealed 10 top candidates and also that dsRNAs coming from synthesis reactions with 80-90x yields were the most effective. Follow-up studies using uptake enhancers in combination with top candidate dsRNAs were unsuccessful. Subsequent concentration range feeding assays on the top candidates revealed two lead termiticidal dsRNAs (3' Hexamerin-2 and 3' Glycosyl Hydrolase Family [GHF] 9-2 cellulase) and another that enhanced feeding (5' GHF9-2 cellulase). Testing a matrix of combinations of these three dsRNAs revealed ultimately that the most consistently effective dsRNA combination was the 3' Hexamerin-2 + 3' GHF9-2 cellulase dsRNA combination. These results provide new information on candidate termiticidal dsRNAs and some apparent factors that have a bearing on their efficacy. Despite these successes, further research and development will be necessary to move dsRNA termiticides from pest management theory to real-world application.
机译:近年来RNA干扰杀虫剂由于其作为减少风险的生物农药的分类以及与常规合成杀虫剂相比,他们提出的登记速度的速度较快的路径而受到影响。本研究的目的是合成和比较62双链RNA(DSRNA)从31种靶基因对抗害虫白蚁物种的疗效,试网肽(kollar)(kollar)(isoptera:rhinoterdae)。 57个DSRNA类似于125个碱基对,每个碱基对都被成功地合成。使用组合浸渍/饲养测定的第一层屏幕揭示了10个顶部候选者,并且还具有80-90倍的合成反应的DSRNA是最有效的。使用摄取增强剂与顶部候选DSRNA结合使用摄取增强剂的后续研究是不成功的。顶部候选物的后续浓度范围喂养测定显示出两种铅终止性DSRNA(3'Hexamerin-2和3'糖基水解酶系列[GHF] 9-2纤维素酶),另一种增强饲料(5'GHF9-2纤维素酶)。测试这三种DSRNA的组合矩阵最终显示最终,最始终如一的有效的DSRNA组合是3'Hexamerin-2 + 3'GHF9-2纤维素酶DSRNA组合。这些结果提供了有关候选人最终的DSRNA和一些表观因素的新信息,具有伴随其疗效。尽管取得了这些成功,但进一步的研发将从害虫管理理论转移到现实世界申请中的DSRNA总决赛。

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