Zhang Qi, Liu Dan, Ou Yuqin, Gan Xiuhai
State Key Laboratory of Green Pesticide, Key Laboratory of Green Pesticide and Agricultural Bioengineering, Ministry of Education, Guizhou University, Guiyang 550025, China.
J Agric Food Chem. 2025 Jan 8;73(1):169-179. doi: 10.1021/acs.jafc.4c07806. Epub 2024 Dec 23.
Plant-parasitic nematodes pose a significant threat to crop production, impacting agricultural yields. In the search for new nematicides, a series of 1,2,4-oxadiazole-5-carboxylic acid derivatives containing amide or ester groups were designed and synthesized using an activity-based approach. Bioassay results showed that some compounds exhibited good nematicidal activity against , , and . Especially, compound showed excellent nematicidal activity against with an LC value of 19.0 μg/mL at 48 h, outperforming tioxazafen (LC = 149 μg/mL) and fosthiazate (LC > 300 μg/mL). In semi- and pot experiments, compound demonstrated superior nematicidal activity compared to fosthiazate against while also being safe for rice seeds. The mechanism of action revealed that compound could inhibit the population and behavior of , damage the nematode cuticle, resulting in fluid leakage, affect the production of reactive oxygen species, lipofuscin, and lipids in nematodes, and inhibit acetylcholinesterase in . These findings suggest that compound has the potential to be a safe and effective seed treatment nematicide.
植物寄生线虫对作物生产构成重大威胁,影响农业产量。在寻找新型杀线虫剂的过程中,采用基于活性的方法设计并合成了一系列含有酰胺或酯基的1,2,4-恶二唑-5-羧酸衍生物。生物测定结果表明,一些化合物对[此处原文缺失线虫种类信息]表现出良好的杀线虫活性。特别是,化合物[此处原文缺失化合物编号]对[此处原文缺失线虫种类信息]表现出优异的杀线虫活性,在48小时时LC值为19.0μg/mL,优于噻唑磷(LC = 149μg/mL)和噻唑膦(LC > 300μg/mL)。在温室和盆栽试验中,化合物[此处原文缺失化合物编号]与噻唑膦相比,对[此处原文缺失线虫种类信息]表现出更强的杀线虫活性,同时对水稻种子也安全。作用机制表明,化合物[此处原文缺失化合物编号]可抑制[此处原文缺失线虫种类信息]的种群数量和行为,破坏线虫表皮,导致体液渗漏,影响线虫体内活性氧、脂褐素和脂质的产生,并抑制[此处原文缺失线虫种类信息]中的乙酰胆碱酯酶。这些发现表明,化合物[此处原文缺失化合物编号]有潜力成为一种安全有效的种子处理杀线虫剂。