Department of Entomology and Agricultural Zoology, Benaki Phytopathological Institute, 8 Stefanou Delta Str, 14561, Kifisia, Greece.
Institute of Biology, Medicinal Chemistry and Biotechnology, National Hellenic Research Foundation, Athens, Greece.
Environ Sci Pollut Res Int. 2018 Apr;25(11):10243-10249. doi: 10.1007/s11356-017-8596-2. Epub 2017 Feb 16.
The insecticidal activity of a new nano-formulated natural pyrethrin was examined on the cotton aphid, Aphis gossypii Glover (Hemiptera: Aphididae), and the predators Coccinella septempunctata L. (Coleoptera: Coccinellidae) and Macrolophus pygmaeus Rambur (Hemiptera: Miridae), in respect with the nano-scale potential to create more effective and environmentally responsible pesticides. Pyrethrin was nano-formulated in two water-in-oil micro-emulsions based on safe biocompatible materials, i.e., lemon oil terpenes as dispersant, polysorbates as stabilizers, and mixtures of water with glycerol as the dispersed aqueous phase. Laboratory bioassays showed a superior insecticidal effect of the pyrethrin micro-emulsions compared to two commercial suspension concentrates of natural pyrethrins against the aphid. The nano-formulated pyrethrins were harmless, in terms of caused mortality and survival time, to L3 larvae and four-instar nymphs of the predators C. septempunctata and M. pygmaeus, respectively. We expect that these results can contribute to the application of nano-technology in optimization of pesticide formulation, with further opportunities in the development of effective plant protection products compatible with integrated pest management practices.
新的纳米配方天然除虫菊素对棉蚜(半翅目:蚜科)和捕食性瓢虫(鞘翅目:瓢虫科)和小花蝽(半翅目:盲蝽科)的杀虫活性进行了研究,以期开发更有效和对环境负责的农药。除虫菊素被纳米配方成两种基于安全生物相容性材料的油包水微乳液,即柠檬油萜类作为分散剂,聚山梨酯作为稳定剂,以及水和甘油的混合物作为分散的水相。实验室生物测定表明,与两种天然除虫菊素的商业悬浮浓缩物相比,除虫菊素微乳液对蚜虫具有更高的杀虫效果。纳米配方的除虫菊素对捕食性瓢虫和小花蝽的 L3 幼虫和四龄若虫的死亡率和存活时间均无危害。我们期望这些结果有助于将纳米技术应用于优化农药配方,为开发与综合虫害管理实践兼容的有效植物保护产品提供更多机会。