Shi Qinjie, Shi Yanxia, Chang Kang, Chen Jianqin, Zhao Zhenjiang, Zhu Weiping, Xu Yufang, Li BaoJu, Qian Xuhong
State Key Laboratory of Bioreactor Engineering, Shanghai Key Laboratory of Chemical Biology, School of Pharmacy, East China University of Science and Technology Shanghai 200237 China
Institute of Vegetables and Flowers, Chinese Academy of Agricultural Science Beijing 100081 China
RSC Adv. 2019 Nov 6;9(62):36204-36207. doi: 10.1039/c9ra06892a. eCollection 2019 Nov 4.
Due to the emergence of drug resistance, pesticide residue and environmental contamination, it is important to develop novel eco-friendly strategies to protect plants. Among them, plant activators have been gaining more and more attention. Herein, based on SHAFTS method, a new scaffold for novel plant activators was predicted and the discovery and structure-activity relationships of a series of 3(2)-pyridazinone derivatives as novel plant activators were elucidated in detail. The vast majority of compounds exhibited excellent broad-spectrum induced resistance activity against tested diseases but no direct antimicrobial activity . Among them, compound 32 showed excellent efficacy against four pathogens and great potential as new plant activators in crop protection.
由于耐药性的出现、农药残留和环境污染,开发新型环保的植物保护策略至关重要。其中,植物激活剂越来越受到关注。在此,基于SHAFTS方法,预测了一种新型植物激活剂的新骨架,并详细阐明了一系列3(2)-哒嗪酮衍生物作为新型植物激活剂的发现及其构效关系。绝大多数化合物对测试病害表现出优异的广谱诱导抗性活性,但无直接抗菌活性。其中,化合物32对四种病原菌表现出优异的防治效果,在作物保护中作为新型植物激活剂具有巨大潜力。