Cui Jianxia, Sun Changjiao, Wang Anqi, Wang Yan, Zhu Huaxin, Shen Yue, Li Ningjun, Zhao Xiang, Cui Bo, Wang Chong, Gao Fei, Zeng Zhanghua, Cui Haixin
Institute of Environment and Sustainable Development in Agriculture, Chinese Academy of Agricultural Sciences, Beijing 100081, China.
Nanomaterials (Basel). 2020 Jan 27;10(2):220. doi: 10.3390/nano10020220.
The prevention and control of pests and diseases are becoming increasingly difficult owing to extensive pesticide resistance. The synergistic use of pesticides for disease control is an effective way of slowing pesticide resistance, reducing the number of pesticide applications, and protecting the environment. In this study, a dual-functionalized pesticide nanocapsule delivery system loaded with two active ingredients (AIs)-validamycin and thifluzamide-was developed to prevent and control rice sheath blight; the nanocapsule system was based on a water-oil-water double emulsion method combined with high-pressure homogenization technology. Our results showed that the dual-functionalized pesticide nanocapsules were monodisperse spheres with a mean particle size of ~260 nm and had good storage stability. Compared with commercial formulations, the dual-functionalized pesticide nanocapsules exhibited good foliar spread owing to their small size, which is beneficial for reducing the loss of pesticides on the leaves. The 50% median effect concentration and synergistic ratio against Rhizoctonia solani of the dual-functionalized pesticide nanocapsules and commercial formulation were 0.0082 and 0.0350 μg/mL, and 2.088 and 0.917, respectively. These findings indicate that the bioactivity of the dual-functionalized system was significantly better than that of the commercial formulations and that the dual-functionalized system demonstrated a clear synergistic effect between the two AIs. The system presented here is simple, fast, and capable of dual-pesticide loading with significant synergistic effects. Our findings could help to facilitate the improvement of pesticides efficiency and the slowing of pesticide resistance.
由于广泛的抗药性,病虫害的防治变得越来越困难。协同使用农药进行病害防治是减缓抗药性、减少农药施用量和保护环境的有效方法。在本研究中,开发了一种负载两种活性成分(validamycin和thifluzamide)的双功能农药纳米胶囊递送系统,用于防治水稻纹枯病;该纳米胶囊系统基于水包油包水双乳液法结合高压均质技术。我们的结果表明,双功能农药纳米胶囊为单分散球体,平均粒径约为260 nm,具有良好的储存稳定性。与商业制剂相比,双功能农药纳米胶囊由于尺寸小,表现出良好的叶面铺展性,这有利于减少叶片上农药的损失。双功能农药纳米胶囊和商业制剂对立枯丝核菌的50%中位效应浓度和协同比分别为0.0082和0.0350 μg/mL,以及2.088和0.917。这些结果表明,双功能系统的生物活性明显优于商业制剂,并且双功能系统在两种活性成分之间表现出明显的协同效应。这里介绍的系统简单、快速,能够进行双农药负载并具有显著的协同效应。我们的研究结果有助于提高农药效率并减缓抗药性。