桃红蓟马
蚜虫
吲哚试验
生物
生物化学
化学
豌豆
病虫害综合治理
病虫害防治
有害生物分析
RNA干扰
植物
蚜虫科
立体化学
生物活性
组合化学
作者
Wenya Zhu,Ziwei Zhu,Haoyu Tang,Adel Khashaveh,Dong Teng,Renxuan Zou,Jianing Ren,Yongjun Zhang,Zhijian Xu,Jiaxing Huang,Hongxia Duan
标识
DOI:10.1021/acs.jafc.5c15400
摘要
Targeting odorant-binding proteins (OBPs) is a promising strategy for developing sustainable, behavior-modifying pest control agents. The unfamiliarly highly expressed OBP7 from Acyrthosiphon pisum (ApisOBP7) is a known binder of aphid alarm pheromone ( E )-β-farnesene. Here, indole was identified as a moderate binder of ApisOBP7 ( K i = 28.47 μM) with repellent activity against A. pisum (repellent rate = 32.67%). Using this scaffold, 15 novel indole-2-carboxylate derivatives were designed and synthesized to discover selective ligands for ApisOBP7. Compound B02 exhibited an excellent affinity ( K i = 2.73 μM) to ApisOBP7. Molecular dynamics simulations suggested its high affinity originated from strong hydrophobic interactions and key hydrogen bonds. This strong binding conferred efficient repellency for B02 with 57.33% repellency rate at a 5 μg dose. Critically, RNAi study on ApisOBP7 significantly reduced repellent activity of indole (from 32.67% to 10%) and B02 (from 57.33% to 20%). This work validates ApisOBP7 as a valuable target for novel aphid repellent design.
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