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三种新型辣椒硫代噻唑烷酮对玉米螟生殖力的调控。

Regulation of three novel pepper thiothiazolidinones on the fecundity of Spodoptera frugiperda.

机构信息

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

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

出版信息

Pestic Biochem Physiol. 2024 Sep;204:106033. doi: 10.1016/j.pestbp.2024.106033. Epub 2024 Jul 25.

Abstract

Spodoptera frugiperda has emerged as a major invasive pest worldwide. The utilization of chemical pesticides not only poses numerous ecological concerns but also fosters resistance in S. frugiperda. In this study, we designed and synthesized three novel thiothiazolidinone compounds (6a, 7b, and 7e) and incorporated innovative thiothiazolidinone structural elements into the piperine skeleton. Treatment with compounds 6a and 7e resulted in the blackening and agglomeration of oviduct eggs within the ovaries of certain female moths, impeding the release of normal eggs. The levels of vitellogenin and vitellogenin receptor, along with three trehalase inhibitors, exhibited a dynamic equilibrium state, leading to no discernible change in egg production but a notable increase in the generation of low-hatching-rate egg fragments. Compared with the injection of 2%DMSO, the eclosion rate of 6a injection was significantly decreased, as followed the spawning time and longevity were prolonged or significantly prolonged in the trehalase inhibitors of 6a, 7b, and 7e. We aimed to investigate the regulatory impacts of three new pepper thiothiazolidinone compounds on the reproduction of S. frugiperda, and to authenticate the efficacy of novel alginase inhibitors in inhibiting the reproduction of S. frugiperda. This research endeavors to aid in the identification of efficient and steadfast trehalase inhibitors, thereby expediting the research and development of potent biological pesticides.

摘要

美洲棉铃象甲已成为全球主要的入侵害虫。化学农药的使用不仅带来了诸多生态问题,还促使美洲棉铃象甲产生了抗药性。在本研究中,我们设计并合成了三种新型噻唑烷酮化合物(6a、7b 和 7e),并将创新的噻唑烷酮结构元素融入胡椒碱骨架中。化合物 6a 和 7e 的处理导致某些雌性飞蛾卵巢中的卵管卵变黑和聚集,阻碍了正常卵的释放。卵黄蛋白原和卵黄蛋白原受体的水平以及三种海藻糖酶抑制剂均处于动态平衡状态,导致产卵量没有明显变化,但孵化率低的卵碎片数量显著增加。与 2%DMSO 注射相比,6a 注射的羽化率显著降低,而 6a、7b 和 7e 的海藻糖酶抑制剂延长或显著延长了产卵时间和寿命。我们旨在研究三种新型辣椒噻唑烷酮化合物对美洲棉铃象甲生殖的调节作用,并验证新型褐藻胶酶抑制剂抑制美洲棉铃象甲生殖的功效。本研究旨在帮助鉴定有效的、稳定的海藻糖酶抑制剂,从而加速高效生物农药的研究和开发。

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