尖孢镰刀菌
纳米颗粒
壳聚糖
化学
孢子
镰刀菌
接种
核化学
粒径
丙二醛
微生物学
材料科学
园艺
纳米技术
生物化学
生物
氧化应激
物理化学
作者
Jing Zhou,Rourou Wang,Ming Niu,Minrui Zhu,Lumei Pu,Weibing Xu,Runtian Ma
摘要
The infection caused by Fusarium oxysporum severely threatens cotton production. Herein, carvacro-chitosan nanoparticles (CS@CAR) are facilely fabricated using tripolyphosphate as a crosslinker. When the initial mass ratio of chitosan to carvacrol is 2.5 to 1, the nanoparticles show the best stability and drug loading. The CS@CAR nanoparticles exhibit a uniform spherical shape with a diameter ranging from ~200 nm. CAR releases 51.23% of the total content within the first 48 hours in the simulated fungal infection microenvironment. The contact angle of drug-loaded particles decreases by 12.2 and 6.6° compared with that of pure water and unloaded particles. The fluorescence intensity of leaves before and after rain erosion is 1.3 times and 1.2 times that of the pure water control group by fluorescence imaging analysis. The bacteriostatic activity of drug-loaded nanoparticles is 6-7 times that of non-drug-loaded nanoparticles. The contents of nucleic acid, protein, and malondialdehyde leaked by spores after treatment with drug-loaded particles are 1.4, 1.5, and 2.3 times those in the non-drug-loaded particle treatment group, respectively. The CS@CAR entirely prevents Fusarium oxysporum from infecting cotton leaves in spore inoculation experiments. The CS@CAR nanoparticles are expected to be used to prevent and control the infection of Fusarium oxysporum on cotton.
科研通智能强力驱动
Strongly Powered by AbleSci AI