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该属中的抗性:关键昆虫解毒基因

Resistance in the Genus : Key Insect Detoxification Genes.

作者信息

Hilliou Frédérique, Chertemps Thomas, Maïbèche Martine, Le Goff Gaëlle

机构信息

Université Côte D'Azur, INRAE, CNRS, ISA, F-06903 Sophia Antipolis, France.

Institut D'Ecologie et des Sciences de L'Environnement de Paris, Sorbonne Université, CNRS, INRAE, IRD, iEES-Paris, F-75005 Paris, France.

出版信息

Insects. 2021 Jun 11;12(6):544. doi: 10.3390/insects12060544.

Abstract

The genus (Lepidoptera: Noctuidae) includes species that are among the most important crop pests in the world. These polyphagous species are able to feed on many plants, including corn, rice and cotton. In addition to their ability to adapt to toxic compounds produced by plants, they have developed resistance to the chemical insecticides used for their control. One of the main mechanisms developed by insects to become resistant involves detoxification enzymes. In this review, we illustrate some examples of the role of major families of detoxification enzymes such as cytochromes P450, carboxyl/cholinesterases, glutathione S-transferases (GST) and transporters such as ATP-binding cassette (ABC) transporters in insecticide resistance. We compare available data for four species, , , and . Molecular mechanisms underlying the involvement of these genes in resistance will be described, including the duplication of the CYP9A cluster, over-expression of GST epsilon or point mutations in acetylcholinesterase and ABCC2. This review is not intended to be exhaustive but to highlight the key roles of certain genes.

摘要

(鳞翅目:夜蛾科)包含的一些物种是世界上最重要的农作物害虫。这些多食性物种能够取食多种植物,包括玉米、水稻和棉花。除了能够适应植物产生的有毒化合物外,它们还对用于防治它们的化学杀虫剂产生了抗性。昆虫产生抗性的主要机制之一涉及解毒酶。在本综述中,我们举例说明了主要解毒酶家族的作用,如细胞色素P450、羧酸酯酶/胆碱酯酶、谷胱甘肽S-转移酶(GST)以及转运蛋白,如ATP结合盒(ABC)转运蛋白在杀虫剂抗性中的作用。我们比较了四种物种**、**、的现有数据。将描述这些基因参与抗性的分子机制,包括CYP9A基因簇的复制、GSTε的过度表达或乙酰胆碱酯酶和ABCC2中的点突变。本综述并非详尽无遗,而是旨在突出某些基因的关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8433/8230579/d6f004af9ffd/insects-12-00544-g001.jpg

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