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转录组分析显示,多个基因与朱砂叶螨对氟啶虫胺腈的抗性有关。

Transcriptome analysis revealed that multiple genes were related to the cyflumetofen resistance of Tetranychus cinnabarinus (Boisduval).

机构信息

Key Laboratory of Entomology and Pest Control Engineering, College of Plant Protection, Southwest University, Chongqing, China; Academy of Agricultural Sciences, Southwest University, Chongqing, China; State Cultivation Base of Crop Stress Biology for Southern Mountainous Land of Southwest University, Southwest University, Chongqing, China.

Institute of Agricultural Resources and Environment, Chongqing Academy of Agricultural Sciences, Chongqing 401329, China.

出版信息

Pestic Biochem Physiol. 2021 Mar;173:104799. doi: 10.1016/j.pestbp.2021.104799. Epub 2021 Feb 8.

Abstract

Metabolic resistance is one of the main causes of acaricide resistance. Many previous studies focused on the function of specific genes in insecticides/acaricides resistance. However, during the development of resistance, the overall dynamic of expression levels of detoxification enzyme genes in mites is still unclear. Tetranychus cinnabarinus, a major agricultural pest, which is notorious for developing resistance to acaricides rapidly. In this study, a field susceptible strain (YS) was continuously selected for 16, 25 and 32 generations, and developed to low resistance (7.83-fold, L), medium resistance (17.23-fold, M) and high resistance (86.05-fold, H), respectively. Transcriptome sequencing was performed in YS, L, M and H strains. Overall, compared with YS strain, the number of differential expression genes increased slightly with the development of cyflumetofen-resistance. As for detoxification genes, the median of fold change of up-regulated P450、CCE and GST genes was higher than those of all up-regulated genes in three resistance level, but only the number and the median of fold change of up-regulated P450 genes was increased slightly with the development of resistance. In addition, synergism experiments also proved that P450 and GST genes were the major contributors to the metabolic resistance of cyflumetofen of T. cinnabarinus. These results showed that the resistance of T. cinnabarinus to cyflumetofen was related to many resistant genes, among which P450 genes could play crucial roles in cyflumefen resistance.

摘要

代谢抗性是杀螨剂抗性的主要原因之一。许多先前的研究都集中在杀虫剂/杀螨剂抗性中特定基因的功能上。然而,在抗性发展过程中,螨虫解毒酶基因表达水平的整体动态仍然不清楚。朱砂叶螨是一种主要的农业害虫,它以迅速对杀螨剂产生抗性而臭名昭著。在这项研究中,对田间敏感品系(YS)进行了连续 16、25 和 32 代的选择,分别发展为低抗性(7.83 倍,L)、中抗性(17.23 倍,M)和高抗性(86.05 倍,H)。对 YS、L、M 和 H 品系进行了转录组测序。总体而言,与 YS 品系相比,随着氟吡呋喃酮抗性的发展,差异表达基因的数量略有增加。就解毒基因而言,上调的 P450、CCE 和 GST 基因的倍数变化中位数高于三个抗性水平所有上调基因的中位数,但只有上调 P450 基因的数量和中位数随着抗性的发展略有增加。此外,协同作用实验也证明了 P450 和 GST 基因是朱砂叶螨对氟吡呋喃酮代谢抗性的主要贡献者。这些结果表明,朱砂叶螨对氟吡呋喃酮的抗性与许多抗性基因有关,其中 P450 基因可能在氟吡呋喃酮抗性中发挥关键作用。

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