Institute of Environment and Sustainable Development in Agriculture, Chinese Academy of Agricultural Sciences, Beijing 100081, PR China.
Department of Biology, East Carolina University, Greenville, North Carolina 27858, United States.
J Agric Food Chem. 2022 Jun 29;70(25):7653-7661. doi: 10.1021/acs.jafc.2c01791. Epub 2022 Jun 14.
Pesticides play an important role in pest control. However, they can be limited due to low utilization efficiency, causing substantial losses to the environment and ecological damage. Nanotechnology is an active area of research regarding encapsulation of pesticides for sustainable pest control. Here, we developed intelligent formulations of avermectin (Av) quaternary ammonium chitosan surfactant (QACS) nanocapsules (, Av-Th@QACS) with on-demand controlled release properties, toward ambient temperature and maximal synergistic biological activity of Av and QACS. The Av-Th@QACS regulated the quantity of pesticide release in accordance with the ambient temperature changes and, insofar as this release is a means of responding to variations in pest populations, maximized the synergistic activity. In addition, the Av-Th@QACS were highly adhesive to crop leaves as a result of the prolonged retention time on the crop leaves. Therefore, Av-Th@QACS exhibited greater control against aphids at 35 °C than at 15 and 25 °C. Compared with commercial formulations, Av-Th@QACS was more toxic at 35 °C and less toxic at 15 °C. Thus, researchers can apply Av-Th@QACS as intelligent nanopesticides with an on-demand, controlled release and synergistic biological activity and, in so doing, prolong pesticide duration and improve the utilization efficiency.
农药在病虫害防治中起着重要作用。然而,由于利用率低,会造成环境和生态破坏。纳米技术是农药封装用于可持续病虫害防治的一个活跃研究领域。在这里,我们开发了具有按需控制释放特性的阿维菌素(Av)季铵化壳聚糖表面活性剂(QACS)纳米胶囊(,Av-Th@QACS)的智能制剂,具有环境温度和 Av 和 QACS 的最大协同生物活性。Av-Th@QACS 根据环境温度变化调节农药释放的数量,并且由于这种释放是对害虫种群变化的响应方式,因此最大限度地提高了协同活性。此外,由于在作物叶片上的滞留时间延长,Av-Th@QACS 对作物叶片具有高度的附着性。因此,Av-Th@QACS 在 35°C 时对蚜虫的防治效果大于 15°C 和 25°C。与商业制剂相比,Av-Th@QACS 在 35°C 时毒性更大,在 15°C 时毒性更小。因此,研究人员可以将 Av-Th@QACS 用作具有按需、控制释放和协同生物活性的智能纳米农药,从而延长农药的持续时间并提高利用率。