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Assessment of the role of an ABCC transporter TuMRP1 in the toxicity of abamectin to Tetranychus urticae

阿维菌素 荨麻疹叶螨 生物 ATP结合盒运输机 蜘蛛螨 RNA干扰 抗药性 秀丽隐杆线虫 阿维菌素 遗传学 毒理 杀虫剂 基因 运输机 有害生物分析 植物 核糖核酸 生态学 解剖
作者
Ming‐Mei Wu,Yan Zhang,Tian Tian,Dandan Xu,Qingjun Wu,Wen Xie,Youjun Zhang,Neil Crickmore,Zhaojiang Guo,Shaoli Wang
出处
期刊:Pesticide Biochemistry and Physiology [Elsevier]
卷期号:195: 105543-105543 被引量:6
标识
DOI:10.1016/j.pestbp.2023.105543
摘要

The rapid evolution of pest resistance threatens the sustainable utilization of bioinsecticides such as abamectin, and so deciphering the molecular mechanisms affecting toxicity and resistance is essential for their long-term application. Historical studies of abamectin resistance in arthropods have mainly focused on mechanisms involving the glutamate-gated chloride channel (GluCl) targets, with the role of metabolic processes less clear. The two-spotted spider mite, Tetranychus urticae, is a generalist herbivore notorious for rapidly developing resistance to pesticides worldwide, and abamectin has been widely used for its control in the field. After reanalyzing previous transcriptome and RNA-seq data, we here identified an ABC transporter subfamily C gene in T. urticae named multidrug resistance-associated protein 1 (TuMRP1), whose expression differed between susceptible and resistant populations. Synergism bioassays with the inhibitor MK-571, the existence of a genetic association between TuMRP1 expression and susceptibility to abamectin, and the effect of RNA interference mediated silencing of TuMRP1 were all consistent with a direct role of this transporter protein in the toxicity of abamectin. Although ABC transporters are often involved in removing insecticidal compounds from cells, our data suggest either an alternative role for these proteins in the mechanism of action of abamectin or highlight an indirect association between their expression and abamectin toxicity.
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