College of Plant Protection, Shenyang Agricultural University, Shenyang, China.
Innovation Center of Pesticide Research, Department of Applied Chemistry, College of Science, China Agricultural University, Beijing, China.
Pest Manag Sci. 2021 Sep;77(9):3910-3920. doi: 10.1002/ps.6418. Epub 2021 May 5.
Succinate dehydrogenase inhibitors (SDHIs) play an increasingly important role in controlling plant diseases. However, the similar structures of SDHIs result in rapid development of cross-resistance development and a clear bottleneck of poor activity against oomycetes, therefore the need to seek new SDHI fungicides with novel structures is urgent.
Innovative pyrazolyl oxime ethers were designed by replacing amide with oxime ether based on the succinate dehydrogenase (SDH) structure, and 19 pairs of Z- and E-isomers were efficiently prepared for the discovery of SDHI compounds with a novel bridge. Their biological activities against four fungi and two oomycetes were evaluated, and substantial differences were observed between the Z- and E- isomers of the title compounds. Furthermore, most of these compounds exhibited remarkable activities against Rhizoctonia solani with EC values of less than 10 mg L in vitro, and bioassay in vivo further confirmed that E-I-6 exhibited good protective efficacy (76.12%) at 200 mg L . In addition, Z-I-12 provided better activity against the oomycetes Pythium aphanidermatum and Phytophthora capsici (EC = 1.56 and 0.93 mg L ) than those of boscalid. Moreover, E-I-12 exhibited excellent SDH inhibition (IC = 0.21 mg L ) thanks to its good binding ability to the SDH by hydrogen-bonding interactions, π-cation interaction and hydrophobic interactions.
Novel pyrazolyl oxime ethers have the potential as SDHI compounds for future development, and the strategy of replacing an amide bond with oxime ether may offer an alternative option in SDHI fungicide discovery.
琥珀酸脱氢酶抑制剂(SDHIs)在防治植物病害方面发挥着越来越重要的作用。然而,SDHIs 结构相似导致交叉抗性发展迅速,对卵菌的活性明显较差,因此迫切需要寻找具有新结构的新型 SDHI 杀菌剂。
基于琥珀酸脱氢酶(SDH)结构,用肟醚取代酰胺,设计了新颖的吡唑基肟醚,高效地合成了 19 对 Z-和 E-异构体,用于发现具有新型桥的 SDHI 化合物。评估了它们对四种真菌和两种卵菌的生物活性,发现标题化合物的 Z-和 E-异构体之间存在显著差异。此外,这些化合物中的大多数对丝核菌具有显著的活性,体外 EC 值均小于 10 mg/L,体内生物测定进一步证实 E-I-6 在 200 mg/L 时具有良好的保护效果(76.12%)。此外,Z-I-12 对卵菌腐霉和辣椒疫霉的活性优于啶酰菌胺(EC 50 分别为 1.56 和 0.93 mg/L)。此外,E-I-12 对 SDH 具有良好的抑制作用(IC 50 = 0.21 mg/L),这得益于其通过氢键、π-阳离子相互作用和疏水相互作用与 SDH 良好的结合能力。
新型吡唑基肟醚具有作为 SDHI 化合物开发的潜力,用肟醚取代酰胺键的策略可能为 SDHI 杀菌剂的发现提供另一种选择。