Life & Environment Research Center, Life Science Research Institute, Research & Development Division, Kumiai Chemical Industry Co., Ltd., 276 Tamari, Kakegawa-shi, Shizuoka 436-0011, Japan.
Agrochemical Research Center, Life Science Research Institute, Research & Development Division, Kumiai Chemical Industry Co., Ltd., 3360 Kamo, Kikugawa-shi, Shizuoka 439-0031, Japan.
J Agric Food Chem. 2024 Aug 21;72(33):18391-18400. doi: 10.1021/acs.jafc.4c03076. Epub 2024 Aug 7.
A newly developed pesticide, flupentiofenox, has a unique trifluoroethyl phenylsulfoxide structure, and it powerfully affects spider mites, including those with resistance to multiple commercial acaricides. To clarify the mode of action of flupentiofenox, we investigated its effect on mitochondrial energy generation. We observed that flupentiofenox decreased adenosine triphosphate (ATP) levels in two-spotted spider mites () at a practical dose. Flupentiofenox potently inhibited mitochondrial oxygen consumption under conditions of palmitoyl-carnitine or octanoic acid supply, but not under conditions of pyruvate supply. These results show that flupentiofenox inhibits the mitochondrial fatty acid metabolic pathway between the uptake of long-chain acylcarnitine or medium-chain fatty acid and the synthesis of acetyl-CoA by β-oxidation, resulting in suppressed mitochondrial energy generation. Our investigations have led us to conclude that flupentiofenox is a pesticide with a novel mode of action.
一种新开发的杀虫剂,氟丙戊氧苯,具有独特的三氟乙基苯砜结构,能强力影响包括对多种商业杀螨剂具有抗性的螨类。为了阐明氟丙戊氧苯的作用方式,我们研究了它对线粒体能量生成的影响。我们观察到氟丙戊氧苯在实际剂量下降低了二斑叶螨中的三磷酸腺苷(ATP)水平。氟丙戊氧苯在棕榈酰肉碱或辛酸供应的条件下强烈抑制线粒体耗氧量,但在丙酮酸供应的条件下不抑制。这些结果表明,氟丙戊氧苯抑制了线粒体脂肪酸代谢途径,该途径发生在长链酰基辅酶 A 或中链脂肪酸的摄取和β-氧化合成乙酰辅酶 A 之间,导致线粒体能量生成受到抑制。我们的研究得出结论,氟丙戊氧苯是一种具有新型作用方式的杀虫剂。