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斜纹夜蛾(鳞翅目:夜蛾科)对杀虫剂的生化和转录组分析。

Biochemistry and transcriptomic analyses of Phthorimaea absoluta (Lepidoptera: Gelechiidae) response to insecticides.

机构信息

International Centre of Insect Physiology and Ecology, Nairobi, Kenya.

Department of Biochemistry, Egerton University, Egerton, Kenya.

出版信息

Sci Rep. 2024 Apr 4;14(1):7931. doi: 10.1038/s41598-024-58413-z.

Abstract

Phthorimaea absoluta is an invasive solanaceous plant pest with highly devastating effects on tomato plant. Heavy reliance on insecticide use to tackle the pest has been linked to insecticide resistance selection in P. absoluta populations. To underline insights on P. absoluta insecticide resistance mechanisms to diamides and avermectins, we evaluated the transcriptomic profile of parental (field-collected) and F8 (lab-reared) populations. Furthermore, to screen for the presence of organophosphate and pyrethroid resistance, we assessed the gene expression levels of acetylcholinesterase (ace1) and para-type voltage-gated sodium channel (VGSG) genes in the F1 to F8 lab-reared progeny of diamide and avermectin exposed P. absoluta field-collected populations. The VGSG gene showed up-regulation in 12.5% and down-regulation in 87.5% of the screened populations, while ace1 gene showed up-regulation in 37.5% and down-regulation in 62.5% of the screened populations. Gene ontology of the differentially expressed genes from both parental and eighth generations of diamide-sprayed P. absoluta populations revealed three genes involved in the metabolic detoxification of diamides in P. absoluta. Therefore, our study showed that the detoxification enzymes found could be responsible for P. absoluta diamide-based resistance, while behavioural resistance, which is stimulus-dependent, could be attributed to P. absoluta avermectin resistance.

摘要

烟实夜蛾是一种具有高度破坏性的茄科植物害虫,对番茄植株造成严重危害。为了应对这种害虫,人们高度依赖杀虫剂的使用,这导致了烟实夜蛾种群对杀虫剂的抗性选择。为了深入了解烟实夜蛾对二酰胺类和阿维菌素类杀虫剂的抗性机制,我们评估了亲本品系(野外采集)和 F8 品系(实验室饲养)的转录组图谱。此外,为了筛选有机磷和拟除虫菊酯抗性,我们评估了暴露于二酰胺和阿维菌素的烟实夜蛾野外采集种群的 F1 至 F8 实验室饲养后代中乙酰胆碱酯酶(ace1)和副型电压门控钠离子通道(VGSG)基因的表达水平。VGSG 基因在 12.5%的筛选种群中上调,在 87.5%的筛选种群中下调,而 ace1 基因在 37.5%的筛选种群中上调,在 62.5%的筛选种群中下调。来自二酰胺喷雾处理的亲本品系和第八代烟实夜蛾种群的差异表达基因的基因本体论揭示了三个参与烟实夜蛾中二酰胺代谢解毒的基因。因此,我们的研究表明,发现的解毒酶可能是烟实夜蛾对二酰胺类杀虫剂产生抗性的原因,而行为抗性则是由刺激依赖性引起的,可能是烟实夜蛾对阿维菌素产生抗性的原因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f243/10995152/95469663cc04/41598_2024_58413_Fig1_HTML.jpg

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