夜蛾
甲壳素
介孔二氧化硅
生物
生物物理学
生物化学
介孔材料
壳聚糖
基因
重组DNA
催化作用
作者
Suman Zong,Dejin Xu,Yiping Jiang,Xiaofeng Wang,Keyan Zhu‐Salzman,Xin Zhang,Jing Zhao,Liubin Xiao,Leigang Zhang,Guangchun Xu,Aiguo Gu,Hao Hong,Linquan Ge,Yongan Tan
标识
DOI:10.1111/1744-7917.70106
摘要
Nanosized formulations are an important means to develop effective pesticide molecules against target pests with improved environmental safety. In this study, we constructed a nanodelivery system using mesoporous silica nanoparticles (MSNs) carrying chlorantraniliprole (CLAP). The drug loading rate was determined using liquid chromatography, and CLAP@MSNs were characterized and analyzed. Adhesion was measured by contact angle and surface tension, and UV resistance was assessed. The transport of CLAP@MSNs within plants was observed using confocal fluorescence microscopy. Additionally, larval bioassay experiments and RNA-seq analyses were conducted on CLAP@MSNs. The results indicate that CLAP (35.6% w/w) has been successfully loaded onto MSNs. CLAP@MSNs appeared to have structure and size similar to MSNs. CLAP@MSNs showed effective adhesion to the surface of corn leaves and stems and also resisted to UV photolysis. Bidirectional delivery of fluorescently labeled CLAP@MSNs through vascular bundles in corn. When administered to Spodoptera frugiperda, mortality in CLAP@MSNs-treated larvae increased whereas weight and developmental period decreased significantly compared with larvae treated with CLAP alone. RNA-seq analysis revealed that oral administration of CLAP@MSNs led to the downregulation of genes associated with drug metabolism, energy metabolism, and chitin protein synthesis, thereby inhibiting the growth and development of insects. Interestingly, CLAP@MSNs exerted no harmful effects on growth of plants and development of non-target organisms. Taken together, CLAP@MSNs provide a safe, effective, and economical insecticidal nanopesticide system that potentially further improves the effectiveness of CLAP against lepidopteran pests, contributing to the reduction of pesticide use in pest management.
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