果胶
材料科学
杀虫剂
果胶酶
控制释放
壳聚糖
纳米技术
化学
生物化学
生物
农学
酶
作者
Yi Min Xie,Chengsheng Zhang,Siqi Ma,Ping Zou,Junqing Ma,Qianru Chen,Yuanyang Zhang,Tingting Ren,Yang Xia,Haiguang Zhu,Xun Yuan,Yiqiang Li,Changliang Jing
标识
DOI:10.1021/acsami.3c17783
摘要
Realizing controllable input of botanical pesticides is conducive to improving pesticide utilization, reducing pesticide residues, and avoiding environmental pollution but is extremely challenging. Herein, we constructed a smart pesticide-controlled release platform (namely, SCRP) for enhanced treatment of tobacco black shank based on encapsulating honokiol (HON) with mesoporous hollow structured silica nanospheres covered with pectin and chitosan oligosaccharide (COS). The SCRP has a loading capacity of 12.64% for HON and could effectively protect HON from photolysis. Owing to the pH- and pectinase-sensitive property of the pectin, the SCRP could smartly release HON in response to a low pH or a rich pectinase environment in the black shank-affected area. Consequently, the SCRP effectively inhibits the infection of P. nicotianae on tobacco with a controlled rate for tobacco black shank of up to 87.50%, which is mainly due to the SCRP's capability in accumulating ROS, changing cell membrane permeability, and affecting energy metabolism. In addition, SCRP is biocompatible, and the COS layer enables SCRP to show a significant growth-promoting effect on tobacco. These results indicate that the development of a stimuli-responsive controlled pesticide release system for plant disease control is of great potential and value for practical agriculture production.
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