Xu H-J, Chen T, Ma X-F, Xue J, Pan P-L, Zhang X-C, Cheng J-A, Zhang C-X
State Key Laboratory of Rice Biology and Ministry of Agriculture Key Laboratory of Agricultural Entomology, Institute of Insect Science, Zhejiang University, Hangzhou, China.
Insect Mol Biol. 2013 Dec;22(6):635-47. doi: 10.1111/imb.12051. Epub 2013 Aug 13.
The brown planthopper (BPH), Nilaparvata lugens, is a major rice pest in Asia, and accumulated evidence indicates that this species is susceptible to RNA interference (RNAi); however, the mechanism underlying RNAi and parental RNAi has not yet been determined. We comprehensively investigated the repertoire of core genes involved in small interfering RNA (siRNA) and micro-RNA (miRNA) pathways in the BPH by comparing its newly assembled transcriptome and genome with those of Drosophila melanogaster, Tribolium castaneum and Caenorhabditis elegans. Our analysis showed that the BPH possesses one drosha and two Dicer (dcr) genes, three dsRNA-binding motif protein genes, two Argonaute (ago) genes, two Eri-1-like genes (eri-1), and a Sid-1-like gene (sid-1). Additionally, we report for first time that parental RNAi might occur in this species, and siRNA pathway and Sid-1 were required for high efficiency of systemic RNAi triggered by exogenous dsRNA. Furthermore, our results also demonstrated that the miRNA pathway was involved in BPH metamorphosis as depletion of the ago1 or dcr1 gene severely impaired ecdysis. The BPH might be a good model system to study the molecular mechanism of systemic RNAi in hemimetabolous insects, and RNAi has potential to be developed to control this pest in agricultural settings.
褐飞虱(Nilaparvata lugens)是亚洲主要的水稻害虫,越来越多的证据表明该物种对RNA干扰(RNAi)敏感;然而,RNAi和母体RNAi的潜在机制尚未确定。通过将褐飞虱新组装的转录组和基因组与黑腹果蝇、赤拟谷盗和秀丽隐杆线虫的转录组和基因组进行比较,我们全面研究了参与褐飞虱小干扰RNA(siRNA)和微小RNA(miRNA)途径的核心基因库。我们的分析表明,褐飞虱拥有一个 Drosha 和两个 Dicer(dcr)基因、三个双链RNA结合基序蛋白基因、两个 Argonaute(ago)基因、两个 Eri-1 样基因(eri-1)和一个 Sid-1 样基因(sid-1)。此外,我们首次报道该物种可能发生母体RNAi,并且siRNA途径和Sid-1是外源双链RNA触发的系统性RNAi高效性所必需的。此外,我们的结果还表明,miRNA途径参与了褐飞虱的变态过程,因为ago1或dcr1基因的缺失严重损害了蜕皮过程。褐飞虱可能是研究半变态昆虫系统性RNAi分子机制的良好模型系统,并且RNAi有潜力在农业环境中被开发用于控制这种害虫。