ICAR-National Bureau of Agricultural Insect Resources, P.B. No. 2491, H.A. Farm Post, Hebbal, Bangalore 560024, India.
Centre for Agricultural Bioinformatics, Indian Agricultural Statistical Research Institute, Pusa, New Delhi 110012, India.
J Econ Entomol. 2022 Aug 10;115(4):1268-1278. doi: 10.1093/jee/toac072.
Diamondback moth, Plutella xylostella is a serious pest of cruciferous vegetables and causes substantial economic loss all over the world. This study was undertaken to decipher the molecular mechanisms involved in the field evolved insecticide resistance in P. xylostella upon exposure to spinosad. To do so, spinosad-resistant and susceptible larval populations were subjected to transcriptome analysis using Illumina paired-end sequencing. De novo assembly was generated from raw reads of both the samples which resulted in the identification of 41,205 unigenes. Functional annotation and digital gene expression analysis were carried out to determine the differentially expressed genes. 1,348 unigenes were found to have a significant differential expression in the resistant population. Several genes involved in insecticide resistance like CYP P450, GSTs, small heat shock protein, and UDP glycosyltransferase were found to be up-regulated while genes related to mitochondrial energy metabolism and cuticular processes were down-regulated. Further, gene mining and phylogenetic analysis of two important gene families namely, CYP and GSTs were performed and the results revealed that these genes could play a major role in the development of field evolved spinosad resistance in P. xylostella by gene duplication and differential gene expression.
小菜蛾,也称粉纹夜蛾,是十字花科蔬菜的严重害虫,在全世界造成了巨大的经济损失。本研究旨在解析小菜蛾在田间暴露于多杀菌素后对杀虫剂产生抗性的分子机制。为此,我们使用 Illumina 配对末端测序对多杀菌素抗性和敏感幼虫种群进行了转录组分析。从两个样本的原始reads 中进行从头组装,共鉴定出 41205 个基因。进行功能注释和数字基因表达分析,以确定差异表达基因。在抗性种群中发现了 1348 个具有显著差异表达的基因。一些与杀虫剂抗性相关的基因,如 CYP P450、GSTs、小热休克蛋白和 UDP 糖基转移酶,被发现上调,而与线粒体能量代谢和表皮过程相关的基因则下调。此外,还对两个重要基因家族 CYP 和 GSTs 进行了基因挖掘和系统发育分析,结果表明这些基因可能通过基因重复和差异基因表达在小菜蛾田间多杀菌素抗性的发展中起主要作用。