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Double-Stranded RNA Uptake through Topical Application, Mediates Silencing of Five CYP4 Genes and Suppresses Insecticide Resistance in Diaphorina citri

机译:通过局部应用吸收双链RNA,介导五个CYP4基因的沉默并抑制柑桔黄中的杀虫剂抗性

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摘要

Silencing of genes through RNA interference (RNAi) in insects has gained momentum during the past few years. RNAi has been used to cause insect mortality, inhibit insect growth, increase insecticide susceptibility, and prevent the development of insecticide resistance. We investigated the efficacy of topically applied dsRNA to induce RNAi for five Cytochrome P450 genes family 4 (CYP4) in Diaphorina citri. We previously reported that these CYP4 genes are associated with the development of insecticide resistance in D. citri. We targeted five CYP4 genes that share a consensus sequence with one dsRNA construct. Quantitative PCR confirmed suppressed expression of the five CYP4 genes as a result of dsRNA topically applied to the thoracic region of D. citri when compared to the expression levels in a control group. Western blot analysis indicated a reduced signal of cytochrome P450 proteins (45 kDa) in adult D. citri treated with the dsRNA. In addition, oxidase activity and insecticide resistance were reduced for D. citri treated with dsRNA that targeted specific CYP4 genes. Mortality was significantly higher in adults treated with dsRNA than in adults treated with water. Our results indicate that topically applied dsRNA can penetrate the cuticle of D. citri and induce RNAi. These results broaden the scope of RNAi as a mechanism to manage pests by targeting a broad range of genes. The results also support the application of RNAi as a viable tool to overcome insecticide resistance development in D. citri populations. However, further research is needed to develop grower-friendly delivery systems for the application of dsRNA under field conditions. Considering the high specificity of dsRNA, this tool can also be used for management of D. citri by targeting physiologically critical genes involved in growth and development.
机译:在过去几年中,通过昆虫中的RNA干扰(RNAi)沉默基因的势头越来越大。 RNAi已被用于引起昆虫死亡,抑制昆虫生长,提高杀虫剂敏感性以及防止产生抗药性。我们调查了局部应用dsRNA诱导柠檬黄中五个细胞色素P450基因家族4(CYP4)RNAi的功效。我们先前曾报道这些CYP4基因与柑橘D.citri中的杀虫剂抗性发展有关。我们靶向与一个dsRNA构建体共享共有序列的五个CYP4基因。与对照组中的表达水平相比,定量PCR证实了由于将dsRNA局部应用到了柠檬果蝇的胸部区域而导致五个CYP4基因表达受到抑制。 Western印迹分析表明,用dsRNA处理的成年桔梗中细胞色素P450蛋白(45 kDa)的信号降低。此外,用靶向特定CYP4基因的dsRNA处理的柠檬果蝇的氧化酶活性和杀虫剂抗性降低。用dsRNA治疗的成年人的死亡率显着高于用水治疗的成年人。我们的结果表明,局部应用的dsRNA可以穿透柠檬果蝇的表皮并诱导RNAi。这些结果扩大了RNAi的范围,将其作为通过靶向多种基因来控制害虫的机制。结果还支持RNAi作为克服柠檬果蝇种群中杀虫剂抗性发展的可行工具的应用。但是,需要进一步的研究来开发适合田间条件下dsRNA应用的生长友好型递送系统。考虑到dsRNA的高特异性,该工具还可以通过靶向参与生长和发育的生理关键基因来用于柑橘黄皮病的管理。

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