Department of Entomology and Nematology, College of Agricultural and Environmental Sciences, University of California Davis, California, USA.
Department of Entomology, University of Georgia, Athens, GA, USA.
Sci Rep. 2024 Aug 27;14(1):19867. doi: 10.1038/s41598-024-70037-x.
Drosophila suzukii lay eggs in soft-skinned, ripening fruits, making this insect a serious threat to berry production. Since its 2008 introduction into North America, growers have used insecticides, such as pyrethroids and spinosads, as the primary approach for D. suzukii management, resulting in development of insecticide resistance in this pest. This study sought to identify the molecular mechanisms conferring insecticide resistance in these populations. We sequenced the transcriptomes of two pyrethroid- and two spinosad-resistant isofemale lines. In both pyrethroid-resistant lines and one spinosad-resistant line, we identified overexpression of metabolic genes that are implicated in resistance in other insect pests. In the other spinosad-resistant line, we observed an overexpression of cuticular genes that have been linked to resistance. Our findings enabled the development of molecular diagnostics that we used to confirm persistence of insecticide resistance in California, U.S.A. To validate these findings, we leveraged D. melanogaster mutants with reduced expression of metabolic or cuticular genes that were found to be upregulated in resistant D. suzukii to demonstrate that these genes are involved in promoting resistance. This study is the first to characterize the molecular mechanisms of insecticide resistance in D. suzukii and provides insights into how current management practices can be optimized.
草莓果实蝇在成熟变软的果实中产卵,这使其成为浆果生产的严重威胁。自 2008 年引入北美以来,种植者一直将杀虫剂(如拟除虫菊酯和多杀菌素)作为防治 D. suzukii 的主要方法,导致这种害虫产生了抗药性。本研究旨在确定这些种群中赋予抗药性的分子机制。我们对两种拟除虫菊酯和两种多杀菌素抗性同性别系进行了转录组测序。在两种拟除虫菊酯抗性系和一种多杀菌素抗性系中,我们鉴定出了与其他昆虫害虫抗药性相关的代谢基因的过表达。在另一种多杀菌素抗性系中,我们观察到与抗药性相关的表皮基因的过表达。我们的研究结果为开发分子诊断提供了依据,我们利用这些分子诊断在美国加利福尼亚州证实了杀虫剂抗性的持续存在。为了验证这些发现,我们利用代谢或表皮基因表达降低的 D. melanogaster 突变体进行了验证,这些基因在抗性 D. suzukii 中被发现上调,表明这些基因参与了促进抗性的过程。本研究首次对 D. suzukii 的杀虫剂抗性的分子机制进行了描述,并为如何优化当前的管理实践提供了思路。