Qu Ren-Yu, Yang Jing-Fang, Devendar Ponnam, Kang Wei-Ming, Liu Yu-Chao, Chen Qiong, Niu Cong-Wei, Xi Zhen, Yang Guang-Fu
Key Laboratory of Pesticide & Chemical Biology of Ministry of Education, College of Chemistry, Central China Normal University (CCNU) , Wuhan 430079, PR China.
State Key Laboratory of Elemento-Organic Chemistry, Nankai University (NKU) , Tianjin 300071, PR China.
J Agric Food Chem. 2017 Dec 27;65(51):11170-11178. doi: 10.1021/acs.jafc.7b05198. Epub 2017 Dec 14.
In the search for new antiresistance acetohydroxyacid synthase (AHAS, EC 2.2.1.6) inhibitors to combat weed resistance associated with AHAS mutations, a series of 2-[(4,6-dimethoxy-1,3,5-triazin-2-yl)oxy]-6-(substituted phenoxy)benzoic acids 11-38 were designed and synthesized via the strategy of conformational flexibility analysis. Compounds 21, 22, 26, 33, 36, and 38 with high potency against both wild-type AtAHAS and its P197L mutant were identified as promising candidates with low resistance factors (RF, defined as the ratio between the k values toward P197L mutant and wild-type AHAS) ranging from 0.73 to 6.32. Especially, compound 22 (RF = 0.73) was further identified as the most potent antiresistance AHAS inhibitor because of its significantly reduced resistance level compared with that of tribenuron-methyl (RF = 2650) and bispyribac (RF = 4.57). Furthermore, compounds 26, 33, 36, and 38 also displayed promising herbicidal activities against sensitive and resistant (P197L) Descurainia sophia at the dosage of 75-150 g of active ingredient (ai)/ha. Notably, compounds 33 and 38 still maintained over 60% herbicidal activity toward the resistant weed even at much lower dosages (37.5 g ai/ha). Therefore, the designed scaffold has the great potential to discover new candidate compounds for the control of weed resistance associated with AHAS mutation.
为了寻找新的抗耐药乙酰羟酸合酶(AHAS,EC 2.2.1.6)抑制剂来对抗与AHAS突变相关的杂草抗性,通过构象灵活性分析策略设计并合成了一系列2-[(4,6-二甲氧基-1,3,5-三嗪-2-基)氧基]-6-(取代苯氧基)苯甲酸11-38。鉴定出对野生型AtAHAS及其P197L突变体均具有高效力的化合物21、22、26、33、36和38为有前景的候选物,其低抗性因子(RF,定义为对P197L突变体和野生型AHAS的k值之比)范围为0.73至6.32。特别地,化合物22(RF = 0.73)因其与甲基苯磺隆(RF = 2650)和双草醚(RF = 4.57)相比抗性水平显著降低,而被进一步鉴定为最有效的抗耐药AHAS抑制剂。此外,化合物26、33、36和38在活性成分用量为75-150 g/公顷时,对敏感和抗性(P197L)的播娘蒿也显示出有前景的除草活性。值得注意的是,即使在低得多的用量(37.5 g活性成分/公顷)下,化合物33和38对抗性杂草仍保持超过60%的除草活性。因此,所设计的支架具有发现用于控制与AHAS突变相关的杂草抗性的新候选化合物的巨大潜力。