Gao Tuqiang, Zhang Borui, Wu Zhaochen, Zhang Qizhen, Shi Xin, Zhou Congying, Liu Xiaofang, Liu Pengfei, Liu Xili
College of Plant Protection, China Agricultural University, Beijing, 100193, China.
J Mater Chem B. 2023 Dec 13;11(48):11496-11504. doi: 10.1039/d3tb01954c.
The suboptimal efficiency in pesticide utilization may elevate residues, posing safety risks to human food and non-target organisms. To address this challenge, delivery systems, such as pathogen infection stimuli-responsive carriers, can be employed to augment the efficiency of fungicide utilization. The bursting of reactive oxygen species (ROS) is a common defense response of host plants to pathogenic infections. In this study, ROS-responsive mesoporous silica nanoparticles (MSN) modified with phenyl sulfide (PHS) as azoxystrobin (AZOX) carrier (MSN-PHS-AZOX) were fabricated. Results demonstrated that MSN-PHS-AZOX exhibited fungicide release kinetics dependent on ROS. inhibition experiments confirmed the fungicidal effect of MSN-PHS-AZOX on , relying on external ROS. leaf experiments showcased the superior persistence of MSN-PHS-AZOX in compared to AZOX SC. Furthermore, MSN-PHS-AZOX exhibits favorable biosafety and lower toxicity to aquatic zebrafish compared to AZOX SC, with no adverse impact on cucumber leaf growth. These findings suggest the potential application of this ROS-responsive nano fungicide in managing plant disease in agricultural fields.
农药利用效率欠佳可能会增加残留量,对人类食物和非靶标生物构成安全风险。为应对这一挑战,可采用病原体感染刺激响应载体等递送系统来提高杀菌剂的利用效率。活性氧(ROS)的爆发是宿主植物对病原体感染的常见防御反应。在本研究中,制备了用苯硫醚(PHS)修饰的作为嘧菌酯(AZOX)载体的ROS响应性介孔二氧化硅纳米颗粒(MSN)(MSN-PHS-AZOX)。结果表明,MSN-PHS-AZOX表现出依赖于ROS的杀菌剂释放动力学。抑制实验证实了MSN-PHS-AZOX对 的杀菌作用依赖于外部ROS。叶片实验表明,与嘧菌酯悬浮剂(AZOX SC)相比,MSN-PHS-AZOX在 中具有更好的持久性。此外,与AZOX SC相比,MSN-PHS-AZOX对水生斑马鱼表现出良好的生物安全性和较低的毒性,对黄瓜叶片生长没有不利影响。这些发现表明这种ROS响应性纳米杀菌剂在农业领域管理植物病害方面具有潜在应用价值。