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过表达 赋予 (Takahashi)对吡虫啉的抗性。

Overexpression of Confers Imidacloprid Resistance to (Takahashi).

机构信息

Hebi Institute of Engineering and Technology, Henan Polytechnic University, Hebi 458030, China.

College of Resources and Environment, Henan Institute of Science and Technology, Xinxiang 453003, China.

出版信息

J Agric Food Chem. 2024 Aug 14;72(32):17824-17833. doi: 10.1021/acs.jafc.4c02431. Epub 2024 Aug 1.

Abstract

, the main species of wheat aphids, is one kind of harmful pest. Chemical insecticides are the important agrochemical products to effectively control wheat aphids. However, the broad application has led to serious resistance of pests to several insecticides, and understanding insecticide resistance mechanisms is critical for integrated pest management. In this study, , a new uridine diphosphate (UDP)-glycosyltransferase () gene, was cloned and more strongly expressed in the SM-R (the resistant strain to imidacloprid) than in the SM-S (the susceptible strain to imidacloprid). The increased susceptibility to imidacloprid was observed after silencing , indicating that it can be related to the resistance to imidacloprid. Subsequently, regulated post-transcriptionally in the coding sequences (CDs) by miR-81 was verified and involved in the resistance to imidacloprid in . This finding is crucial in the roles of involved in insecticide resistance management in pests.

摘要

桃蚜是小麦蚜虫的主要物种之一,是一种有害的害虫。化学杀虫剂是有效控制小麦蚜虫的重要农用化学品。然而,广泛的应用导致了害虫对几种杀虫剂的严重抗性,了解杀虫剂抗性机制对于综合虫害管理至关重要。在这项研究中,克隆并在 SM-R(对吡虫啉具有抗性的品系)中比在 SM-S(对吡虫啉敏感的品系)中更强表达了一个新的尿苷二磷酸(UDP)-糖基转移酶(UGT)基因。沉默 后,对吡虫啉的敏感性增加,表明它可能与吡虫啉的抗性有关。随后,证实了 miR-81 在后转录水平上调控 的编码序列(CDs),并参与了桃蚜对吡虫啉的抗性。这一发现对于 UGT 在害虫杀虫剂抗性管理中的作用至关重要。

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