Department of Crop Science, Agricultural University of Athens, GR-11855 Athens, Greece.
Institute of Molecular Biology and Biotechnology, Foundation for Research and Technology Hellas, GR-700 13 Heraklion, Crete, Greece.
Proc Natl Acad Sci U S A. 2021 Feb 9;118(6). doi: 10.1073/pnas.2020380118.
is one of the main problems in modern beekeeping. Highly selective acaricides with low toxicity to bees are used internationally to control this mite. One of the key acaricides is the organophosphorus (OP) proinsecticide coumaphos, that becomes toxic after enzymatic activation inside We show here that mites from the island Andros (AN-CR) exhibit high levels of coumaphos resistance. Resistance is not mediated by decreased coumaphos uptake, target-site resistance, or increased detoxification. Reduced proinsecticide activation by a cytochrome P450 enzyme was the main resistance mechanism, a powerful and rarely encountered evolutionary solution to insecticide selection pressure. After treatment with sublethal doses of [C] coumaphos, susceptible mite extracts had substantial amounts of coroxon, the activated metabolite of coumaphos, while resistant mites had only trace amounts. This indicates a suppression of the P450 (CYP)-mediated activation step in the AN-CR mites. Bioassays with coroxon to bypass the activation step showed that resistance was dramatically reduced. There are 26 CYPs present in the genome. Transcriptome analysis revealed overexpression in resistant mites of and underexpression of and RNA interference of in the susceptible population, to mimic underexpression seen in the resistant mites, prevented coumaphos activation and decreased coumaphos toxicity.
是现代养蜂业的主要问题之一。国际上使用高度选择性、对蜜蜂毒性低的杀螨剂来控制这种螨虫。其中一种关键的杀螨剂是有机磷(OP)拟除虫菊酯残杀威,它在酶的作用下在体内激活后变得有毒。我们在这里表明,来自安德罗斯岛(AN-CR)的螨虫表现出高水平的残杀威抗性。抗性不是通过降低残杀威摄取、靶标抗性或增加解毒作用来介导的。细胞色素 P450 酶对原杀虫剂的活性降低是主要的抗性机制,这是昆虫对杀虫剂选择压力的一种强大而罕见的进化解决方案。在用亚致死剂量的 [C]残杀威处理后,敏感螨虫提取物中有大量的考克斯松,这是残杀威的激活代谢物,而抗性螨虫只有微量的考克斯松。这表明在 AN-CR 螨虫中抑制了 P450(CYP)介导的激活步骤。用考克斯松进行的生物测定以绕过激活步骤表明,抗性大大降低。在 基因组中存在 26 种 CYP。转录组分析显示,抗性螨虫中 和 的转录本过度表达,而敏感种群中 和 的 RNA 干扰表达降低,模拟抗性螨虫中观察到的表达降低,阻止了残杀威的激活并降低了残杀威的毒性。