细胞色素P450
单加氧酶
酶
人口
转录组
生物
基因
生物测定
化学
生物化学
酶分析
重组DNA
RNA干扰
基因表达
分子生物学
抗药性
核糖核酸
下调和上调
药物代谢
细胞色素
遗传学
蚜虫
新陈代谢
信使核糖核酸
作者
Ziyi Chen,Chunyan Yin,Falong Wang,Xinlin Sun,Wishwajith Kandegama,Z.G. Wang,Guang‐Fu Yang
标识
DOI:10.1021/acs.jafc.5c12109
摘要
The green peach aphid ( Myzus persicae, Hemiptera: Aphididae) is a globally important pest. Isocycloseram (a novel isooxazoline) and fluralaner (a benzamide/sulfonamide) are novel insecticides. A Hainan-resistant population (HNR), exhibited 459- and 316-fold resistance to isocycloseram and fluralaner, respectively, compared with a Yunnan susceptible population (YNS). Synergist bioassays and enzyme activity analyses indicated that enhanced cytochrome P450 monooxygenase activity contributed to resistance. Transcriptomic and qRT-PCR analyses revealed that CYP6CY3 was upregulated 16.4- and 10.8-fold in HNR compared with YNS. RNA interference of CYP6CY3 significantly restored susceptibility to both insecticides. In vitro recombinant enzyme assays confirmed CYP6CY3 -mediated metabolism of isocycloseram and fluralaner, and gene copy number analysis demonstrated a 7.09-fold amplification. These results reveal CYP6CY3 -mediated cross-resistance to isocycloseram and fluralaner, representing the first mechanistic evidence of isoxazoline resistance in M. persicae .
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