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三种含胡椒堿骨架的噻唑烷酮类化合物对海藻糖酶活性和幼虫发育的影响。

Impact of Three Thiazolidinone Compounds with Piperine Skeletons on Trehalase Activity and Development of Larvae.

机构信息

College of Life and Environmental Sciences, Hangzhou Normal University, Hangzhou 311121, China.

Innovation Center of Pesticide Research, Department of Applied Chemistry, College of Science, China Agricultural University, Beijing 100193, China.

出版信息

J Agric Food Chem. 2024 Apr 17;72(15):8423-8433. doi: 10.1021/acs.jafc.3c08898. Epub 2024 Apr 2.

Abstract

Trehalases (TREs) are pivotal enzymes involved in insect development and reproduction, making them prime targets for pest control. We investigated the inhibitory effect of three thiazolidinones with piperine skeletons (6a, 7b, and 7e) on TRE activity and assessed their impact on the growth and development of the fall armyworm (FAW), . The compounds were injected into FAW larvae, while the control group was treated with 2% DMSO solvent. All three compounds effectively inhibited TRE activity, resulting in a significant extension of the pupal development stage. Moreover, the treated larvae exhibited significantly decreased survival rates and a higher incidence of abnormal phenotypes related to growth and development compared to the control group. These results suggest that these TRE inhibitors affect the molting of larvae by regulating the chitin metabolism pathway, ultimately reducing their survival rates. Consequently, these compounds hold potential as environmentally friendly insecticides.

摘要

海藻糖酶(TREs)是参与昆虫发育和繁殖的关键酶,因此成为害虫防治的主要目标。我们研究了三种具有胡椒碱骨架的噻唑烷酮(6a、7b 和 7e)对 TRE 活性的抑制作用,并评估了它们对秋粘虫(FAW)生长和发育的影响。化合物被注射到 FAW 幼虫中,而对照组用 2% DMSO 溶剂处理。三种化合物均能有效抑制 TRE 活性,显著延长蛹发育阶段。此外,与对照组相比,处理过的幼虫表现出明显较低的存活率和更高的与生长和发育相关的异常表型发生率。这些结果表明,这些 TRE 抑制剂通过调节几丁质代谢途径影响幼虫蜕皮,最终降低它们的存活率。因此,这些化合物具有作为环保型杀虫剂的潜力。

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