Chen Zhiwen, Zhao Jianguo, Liu Zehui, Bai Xiuli, Li Weijia, Guan Zhifang, Zhou Ming, Zhu Hongwei
Hainan Yazhou Bay Seed Laboratory, Sanya 572025, China.
National Key Laboratory of Plant Molecular Genetics and National Center for Plant Gene Research, Institute of Plant Physiology and Ecology/CAS Center for Excellence in Molecular Plant Sciences, Chinese Academy of Sciences, Shanghai 200032, China.
Nanomaterials (Basel). 2022 Aug 9;12(16):2731. doi: 10.3390/nano12162731.
Nanopesticides can facilitate controlled release kinetics and efficiently enhance the permeability of active ingredients to reduce the dosage and loss of pesticides. To clarify the synergistic mechanism of graphene-insecticide nanocarriers against cotton bollworm, treatment groups, namely, control, graphene (G), insecticide (lambda-cyhalothrin (Cyh) and cyfluthrin (Cyf)), and graphene-delivered insecticide groups were used to treat the third-instar larvae of cotton bollworm. The variations in phenotypes, namely, the body length, body weight, and mortality of the cotton bollworm, were analyzed. The results show that graphene enhances the insecticidal activity of lambda-cyhalothrin and cyfluthrin against cotton bollworm. The two graphene-delivered insecticides with optimal compositions (3:1) had the strongest inhibitory effects and the highest mortality rates, with the fatality rates for the 3/1 Cyh/G and Cyf/G mixture compositions being 62.91% and 38.89%, respectively. In addition, the 100 μg/mL Cyh/G mixture had the greatest inhibitory effect on cotton bollworm, and it decreased the body length by 1.40 mm, decreased the weight by 1.88 mg, and had a mortality rate of up to 61.85%. The 100 and 150 μg/mL Cyh/G mixtures achieved the same mortality rate as that of lambda-cyhalothrin, thus reducing the use of the insecticide by one-quarter. The graphene-delivered insecticides could effectively destroy the epicuticle spine cells of the cotton bollworm by increasing the permeability and, thus, the toxicity of the insecticides.
纳米农药可促进控释动力学,并有效提高活性成分的渗透性,以减少农药的用量和损失。为阐明石墨烯-杀虫剂纳米载体对棉铃虫的协同作用机制,设置了对照组、石墨烯(G)组、杀虫剂(高效氯氟氰菊酯(Cyh)和氟氯氰菊酯(Cyf))组以及石墨烯负载杀虫剂组,用于处理棉铃虫三龄幼虫。分析了棉铃虫的表型变化,即体长、体重和死亡率。结果表明,石墨烯增强了高效氯氟氰菊酯和氟氯氰菊酯对棉铃虫的杀虫活性。两种最佳组成(3:1)的石墨烯负载杀虫剂具有最强的抑制作用和最高的死亡率,3/1 Cyh/G和Cyf/G混合物组成的死亡率分别为62.91%和38.89%。此外,100μg/mL的Cyh/G混合物对棉铃虫的抑制作用最大,使体长减少1.40mm,体重减少1.88mg,死亡率高达61.85%。100和150μg/mL的Cyh/G混合物达到了与高效氯氟氰菊酯相同的死亡率,从而将杀虫剂的用量减少了四分之一。石墨烯负载杀虫剂可通过增加杀虫剂的渗透性进而提高其毒性,有效破坏棉铃虫的表皮棘细胞。