College of Plant Protection, Southwest University, Chongqing, China.
Chongqing Key Laboratory of Soft-Matter Material Chemistry and Function Manufacturing, Southwest University, Chongqing, China.
Pest Manag Sci. 2023 Jun;79(6):2017-2028. doi: 10.1002/ps.7377. Epub 2023 Feb 7.
The application of chemical pesticides in control of plant bacterial disease may cause potential environmental pollution. Herein, based on the resistance-inducing ability and the special rod-like structure with high aspect ratio of bio-derived chitin nanocrystals (ChNC), a new Cu composite rod-like nanoparticle was fabricated (ChNC@Cu). The antibacterial activity of the composite nanoparticle was systematically studied, and its safety was evaluated.
TEM, FTIR, ICP and other characterization methods proved that ChNC@Cu is a nano rod-like structure, with a Cu loading capacity of 2.63%. In vitro experiments showed that the inhibition rate of ChNC@Cu to P. syringae pv. tabaci was more than 95% when the copper content was 41.6 μg mL . In vivo experiments showed that ChNC@Cu had a good protective effect on P. syringae pv. tabaci of tobacco. In addition, ChNC@Cu exhibited stronger antibacterial activity than Thiodiazole copper (TC) at the same copper content. The study on the antibacterial mechanism of ChNC@Cu proved that ChNC@Cu caused bacterial death by destroying the bacterial cell membrane structure and damaging the DNA bacteria. And ChNC@Cu is highly safe for plants and can promote seed germination and plant growth.
The special rod-like structure of ChNC can enrich Cu to form ChNC@Cu. ChNC@Cu has a good protective effect on bacterial infection of tobacco, and achieves a great antibacterial activity at low Cu concentration, which indicated that ChNC@Cu has induced resistance and antibacterial effect. As a novel green nanofungicide, ChNC@Cu has high potential application value in control of agricultural bacterial diseases. © 2023 Society of Chemical Industry.
在防治植物细菌性病害中应用化学农药可能会造成潜在的环境污染。在此,基于生物衍生甲壳素纳米晶体(ChNC)的抗药性诱导能力和特殊的棒状高纵横比结构,制备了一种新型的 Cu 复合棒状纳米粒子(ChNC@Cu)。系统研究了复合纳米粒子的抗菌活性,并评估了其安全性。
TEM、FTIR、ICP 等表征方法证明 ChNC@Cu 是一种纳米棒状结构,Cu 负载量为 2.63%。体外实验表明,当铜含量为 41.6μg·mL 时,ChNC@Cu 对丁香假单胞菌 pv. 番茄的抑制率超过 95%。体内实验表明,ChNC@Cu 对烟草上的丁香假单胞菌 pv. 番茄具有良好的保护作用。此外,在相同铜含量下,ChNC@Cu 比噻菌铜(TC)具有更强的抗菌活性。ChNC@Cu 抗菌机制的研究证明,ChNC@Cu 通过破坏细菌细胞膜结构和损伤细菌 DNA 导致细菌死亡。并且 ChNC@Cu 对植物具有很高的安全性,能促进种子发芽和植物生长。
ChNC 的特殊棒状结构可以富集 Cu 形成 ChNC@Cu。ChNC@Cu 对烟草细菌性感染具有良好的保护作用,在低 Cu 浓度下实现了很好的抗菌活性,表明 ChNC@Cu 具有诱导抗性和抗菌作用。作为一种新型绿色纳米杀菌剂,ChNC@Cu 在防治农业细菌性病害方面具有很高的潜在应用价值。 © 2023 英国化学学会