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An insecticide formulation of terpene ketones against Sitophilus zeamais and its incorporation into low density polyethylene films

机译:萜烯酮对锡氏酮的杀虫剂配制,并掺入低密度聚乙烯薄膜中

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The use of active natural compounds derived from plants appears as an interesting alternative for pest control in stored products. In this study, the fumigant toxicity of several terpene ketones against maize weevil (Sitophilus zeamais) adults was assessed, and the effect of their combination with piperonyl butoxide (PBO), a cytochrome P450 inhibitor commonly used as synergistic agent, was investigated. A mixture of the most active ketones (R-(+)-pulegone and thymoquinone) was then tested on S. zeamais, and finally this mixture was incorporated into low density polyethylene (LDPE) films by supercritical CO2 impregnation, in order to study the fumigant toxicity of this formulation against S. zeamais under laboratory conditions, as well as the release profile of the active ketones. PBO showed antagonistic effects in combination with terpene ketones, decreasing the toxicity of the individual compounds and therefore increasing their lethal concentrations. The mixture of ketones showed a lower lethal concentration (LC50 value of 7.12 mu L/L air) than the individual compounds, thus indicating a synergistic effect between them. Finally, the impregnated films revealed high toxicity values (up to 95% mortality), and maintained a moderate level of activity even after 8 days of exposure. In conclusion, the mixture of these active terpene ketones incorporated into a polyethylene film, material commonly used for hermetic storage of maize grains, could be applied as a potential technology against insect pests. (C) 2017 Elsevier Ltd. All rights reserved.
机译:衍生自植物的活性天然化合物的使用表现为储存产品中的害虫控制的有趣替代方案。在这项研究中,评估了几种萜烯酮(SiatophilusZeamais)成人对玉米酮(SITOPHILUSZEAMAIS)成人的熏蒸毒性,并研究了它们与哌隆丁基(PBO),常用作为协同剂的细胞色素P450抑制剂的效果。然后在S.Zeamais上测试最活性酮(R - (+) - 巯管和胸腺酮)的混合物,最后通过超临界CO 2浸渍将该混合物掺入低密度聚乙烯(LDPE)膜中,以研究在实验室条件下对Zeamais进行这种制剂的熏蒸毒性,以及活性酮的释放曲线。 PBO与萜烯酮组合表现出拮抗作用,降低各种化合物的毒性,从而增加其致命浓度。酮的混合物显示出比个体化合物的致死浓度较低(LC50值为7.12μl/ l / l / l / l / l / l / l / l / l / l / l / l / l / l / l / l / l / l / l / l / l / l / l / l / l / l / l / l / l / l / l / l / l / l / l / l / l / l / l / l / l)。因此表明它们之间的协同效应。最后,浸渍的薄膜揭示了高毒性值(高达95%的死亡率),即使在暴露8天后也保持了适度的活性水平。总之,将这些活性萜烯酮的混合物掺入聚乙烯薄膜中,常用于玉米晶粒的密封储存的材料,可以作为防止害虫的潜在技术。 (c)2017 Elsevier Ltd.保留所有权利。

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