ATP结合盒运输机
转录因子
锌指转录因子
发起人
锌指
运输机
棉蚜
生物
基因沉默
益达胺
噻虫嗪
生物化学
结合位点
细胞生物学
基因表达
化学
基因
植物
杀虫剂
同翅目
蚜虫科
农学
有害生物分析
作者
Yuntong Lv,Yiou Pan,Jianyi Li,Yaping Ding,Zihan Yu,Kunpeng Yan,Qingli Shang
标识
DOI:10.1016/j.ijbiomac.2023.126765
摘要
Clarifying the molecular mechanisms of cotton aphid resistance to various insecticides is crucial for the long-term safe application of insecticides in chemical control. ATP-binding cassette (ABC) transporters mediate the membrane transport of various substrates (including exogenous substances). Experiments confirmed that ABCB5, ABCF2, and MRP12 contributed to high levels of resistance to spirotetramat, cyantraniliprole, thiamethoxam or imidacloprid. Binding sites of the C2H2 zinc finger transcription factor CF2-II was predicted to be located in the promoters of ABCB5, ABCF2, and MRP12. The expression levels of ABCB5, ABCF2, and MRP12 were significantly upregulated after silencing CF2-II. The results of dual-luciferase reporter assays demonstrated a negative regulatory relationship between CF2-II and ABC transporter promoters. Furthermore, yeast one-hybrid (Y1H) and electrophoresis mobility shift assays (EMSAs) revealed that CF2-II inhibited the expression of ABC transporter genes through interaction with binding sites [ABCF2.p (−1149/−1140) or MRP12.p (−1189/−1181)]. The above results indicated that ABCB5, ABCF2, and MRP12 were negatively regulated by the transcription factor CF2-II, which will help us further understand the mechanism of transcriptional adaption of multi-insecticides resistant related ABC transporters in response to xenobiotics.
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