昆虫学报 ›› 2025, Vol. 68 ›› Issue (5): 541-554.doi: 10.16380/j.kcxb.2025.05.001

• 研究论文 •    下一篇

灰飞虱LWO/AC/cAMP/PKA信号通路调控细胞色素P450基因表达介导对溴氰菊酯抗性

张怡萍, 徐圣, 吴敏*
  

  1. (南京农业大学植物保护学院, 南京 210095)
  • 出版日期:2025-05-20 发布日期:2025-06-06

LWO/AC/cAMP/PKA signal pathway regulates cytochrome P450 gene expression and mediates deltamethrin resistance in Laodelphax striatellus (Hemiptera: Delphacidae)

ZHANG Yi-Ping, XU Sheng, WU Min*   

  1. (College of Plant Protection, Nanjing Agricultural University, Nanjing 210095, China)
  • Online:2025-05-20 Published:2025-06-06

摘要: 【目的】前期研究发现灰飞虱Laodelphax striatellus抗溴氰菊酯品系JH-del中CYP6AY3v2和CYP439A1v3的过量表达是灰飞虱对溴氰菊酯产生抗性的主要机制。本研究旨在阐明灰飞虱CYP6AY3v2和CYP439A1v3上调表达的机理,揭示其调控信号通路。【方法】通过定量PCR检测灰飞虱G蛋白偶联受体(G protein-coupled receptor, GPCR)A家族长波敏感视蛋白(long wavelength-sensitive opsin, LWO)基因LWO在灰飞虱溴氰菊酯抗性品系JH-del和敏感品系JHS 4龄若虫中的表达量;通过RNAi和盐酸布比卡因干扰灰飞虱JH-del品系3龄若虫LWO/AC/cAMP/PKA信号通路基因LWO, AC-2, AC-3, PKA-1, PKA-2和PKA-3,利用生物测定检测灰飞虱对溴氰菊酯敏感性的变化,验证LWO通过增加自身表达量激活下游AC/cAMP/PKA/CYP450s信号通路基因,介导灰飞虱对溴氰菊酯产生抗性。利用转基因果蝇Drosophila结合GAL4/UAS系统和昆虫杆状病毒表达系统分别在黑腹果蝇Drosophila melanogaster 3日龄雌成虫和草地贪夜蛾Spodoptera frugiperda Sf9细胞中异源表达灰飞虱LWO并验证其功能。【结果】LWO在抗溴氰菊酯灰飞虱品系JH-del中的相对表达量是敏感品系JHS中的1.54倍;与对照组(喂食dsGFP)比,喂食目标基因dsRNA干扰灰飞虱品系JH-del 3龄若虫中LWO/AC/cAMP/PKA信号通路中的任何一个节点,该信号通路下游代谢溴氰菊酯的灰飞虱CYP6AY3v2和CYP439A1v3的表达量都显著下降,灰飞虱JH-del品系3龄若虫对溴氰菊酯的敏感性都得以恢复。将灰飞虱LWO分别在黑腹果蝇和Sf9细胞中异源表达后,黑腹果蝇和Sf9细胞对溴氰菊酯的抗性也显著提高,抗性的提高也是通过灰飞虱LWO/AC/cAMP/PKA/CYP450s信号通路介导的。【结论】LWO受体通过增加自身表达量激活下游AC/cAMP/PKA/CYP450s信号通路,介导了灰飞虱对溴氰菊酯抗性的产生,该研究结果为灰飞虱抗性的治理和杀虫剂新靶标的筛选提供了理论依据。

关键词: 灰飞虱, 溴氰菊酯, 抗药性, G蛋白偶联受体, 信号通路, 细胞色素P450s

Abstract: 【Aim】 Previous study found that the overexpression of CYP6AY3v2 and CYP439A1v3 in deltamethrin-resistant strain JH-del of Laodelphax striatellus is the main mechanism of deltamethrin resistance of L. striatellus. The aim of this study is to clarify the mechanism of up-regulated expression of CYP6AY3v2 and CYP439A1v3 in L. striatellus and to reveal the regulatory signal pathways. 【Methods】 The expression levels of long wavelength-sensitive opsin (LOW) gene LWO of the G proteincoupled receptor (GPCR) family A in the 4th instar nymphs of the deltamethrin-resistant strain JHdel and the sensitive strain JHS of L. striatellus were detected by quantitative PCR. RNAi and Bupivacaine HCL were used to interfere with LWO/AC/cAMP/PKA signal pathway genes LWO, AC-2, AC-3, PKA-1, PKA-2 and PKA-3 of the 3rd instar nymphs of L. striatellus strain JH-del, and bioassay was used to detect the change in the sensitivity of L. striatellus to deltamethrin so as to verify that LWO-activated downstream AC/cAMP/PKA/CYP450s signal pathway genes to mediate deltamethrin resistance of L. striatellus by increasing its own expression level. Transgenic Drosophila combined with GAL4/UAS system and insect baculovirus expression system were used to heterogeneously express the L. striatellus LWOi n the 3-day-old female adults of Drosophila melanogaster and Sf9 cells of Spodoptera frugiperda to verify the function of LWO. 【Results】 The relative expression level of LWO  in the deltamethrin-resistant L. striatellus strain JH-del was 1.54-fold as high as that in the sensitive strain JHS. When any node of the LWO/AC/cAMP/PKA signal pathway in the 3rd instar nymph of L. striatellus strain JH-del was interfered by feeding dsRNAs of target genes, the expression levels of CYP6AY3v2 and CYP439A1v3 that metabolize deltamethrin downstream of this signal pathway were significantly decreased, and the sensitivity of the 3rd instar nymphs of strain JH-del of L. striatellus was restored as compared with that in the control group (fed with dsGFP). After heterologous expression of LWO in D. melanogaster and Sf9 cells, the resistance of D. melanogaster and Sf9 cells to deltamethrin increased significantly, and the increase of deltamethrin resistance was also mediated by LWO/AC/cAMP/PKA/CYP450s signal pathway of L. striatellus. 【Conclusion】 LWO receptor activates downstream AC/cAMP/PKA/CYP450s signal pathway by increasing its own expression level, which mediates deltamethrin resistance of L. striatellus. The results provide a theoretical basis for resistance management of L. striatellus and screening of new insecticide targets.

Key words: Laodelphax striatellus, deltamethrin, insecticide resistance, G protein-coupled receptors, signal pathway, cytochrome P450s