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小菜蛾中 G 蛋白偶联受体(GPCRs)的全基因组鉴定及其对溴氰菊酯胁迫的表达谱分析。

Genome-wide identification of G-protein coupled receptors (GPCRs) and their expression profile in response to β-cypermethrin stress in Zeugodacus cucurbitae.

机构信息

Plant Protection Research Institute, Guangdong Academy of Agricultural Sciences, Guangzhou 510640, China; Guangdong Provincial Key Laboratory of High Technology for Plant Protection, Guangzhou 510640, China; Department of Chemistry, The Women University Multan, Pakistan.

Plant Protection Research Institute, Guangdong Academy of Agricultural Sciences, Guangzhou 510640, China; Guangdong Provincial Key Laboratory of High Technology for Plant Protection, Guangzhou 510640, China.

出版信息

Pestic Biochem Physiol. 2024 Jun;202:105919. doi: 10.1016/j.pestbp.2024.105919. Epub 2024 Apr 20.

Abstract

G-protein coupled receptors (GPCRs) are the largest and most diverse transmembrane receptor family in the cell. They are involved in regulating a wide range of biological processes, including behavior, reproduction, and development. However, GPCRs have not yet been identified in Zeugodacus cucurbitae. The current study focuses on the GPCRs identification, classification, distribution, and their expression analysis under β-cypermethrin stress to uncover novel targets for pest management and assist in the development of effective strategies for controlling the melon fly population. We identified 80 GPCRs genes including 50 GPCRs identified in family A, 17 GPCRs identified in family B, 8 identified in family C, and 5 identified in family F. Z. cucurbitae GPCRs showed significant differences in both the number of genes in families or subfamilies, as well as the sequencing of the genes. Interestingly, newly identified GPCRs genes are expressed differently at various developmental stages of Z. cucurbitae. Further, we evaluated these 80 GPCRs using Realtime quantitative PCR to confirm their expression between β-cypermethrin-resistant (RS) strain and susceptible strain (SS) of Z. cucurbitae. We identified 50 GPCR genes were highly overexpressed in a RS. Among these genes, eight genes were strongly induced by the 30% lethal concentration (LC) while two genes were significantly increased by the 50% LC of β-cypermethrin. This first genome-wide profiling and characterization of GPCRs could lay foundation for unraveling detoxification mechanism and target site modifications which may improve the insect resistance and could be effective insecticide targets for Z. cucurbitae management.

摘要

G 蛋白偶联受体(GPCRs)是细胞中最大和最多样化的跨膜受体家族。它们参与调节广泛的生物过程,包括行为、繁殖和发育。然而,在 Zeugodacus cucurbitae 中尚未鉴定出 GPCRs。本研究专注于 GPCRs 的鉴定、分类、分布以及它们在β-氯氰菊酯胁迫下的表达分析,以揭示害虫管理的新靶标,并协助制定控制瓜实蝇种群的有效策略。我们鉴定了 80 个 GPCR 基因,包括家族 A 中的 50 个 GPCR、家族 B 中的 17 个 GPCR、家族 C 中的 8 个 GPCR 和家族 F 中的 5 个 GPCR。Z. cucurbitae GPCR 在家族或亚家族的基因数量以及基因测序方面都存在显著差异。有趣的是,新鉴定的 GPCR 基因在 Z. cucurbitae 的不同发育阶段表达不同。此外,我们使用实时定量 PCR 对这 80 个 GPCR 进行了评估,以确认它们在 Z. cucurbitae 的β-氯氰菊酯抗性(RS)菌株和敏感菌株(SS)之间的表达情况。我们鉴定了 50 个 GPCR 基因在 RS 中高度过表达。在这些基因中,有 8 个基因在 30%致死浓度(LC)下强烈诱导,有 2 个基因在β-氯氰菊酯的 50% LC 下显著增加。这是首次对 GPCRs 进行全基因组分析和特征描述,为揭示解毒机制和靶位修饰奠定了基础,这可能提高昆虫的抗性,并成为 Z. cucurbitae 管理的有效杀虫剂靶标。

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