Pariona Nicolaza, Mtz-Enriquez Arturo I, Sánchez-Rangel D, Carrión Gloria, Paraguay-Delgado F, Rosas-Saito Greta
Red de Estudios Moleculares Avanzados, Instituto de Ecología A. C. Carretera Antigua a Coatepec 351, El Haya 91070 Xalapa Veracruz Mexico
Centro de Investigación y de Estudios Avanzados del IPN Unidad Saltillo Av. Industria Metalúrgica 1062, Parque Industrial Ramos Arizpe 25900 Coahuila Mexico
RSC Adv. 2019 Jun 14;9(33):18835-18843. doi: 10.1039/c9ra03110c.
The fabrication of fungicides in cost-effective and eco-friendly ways is particularly important for agriculture. Plant pathogenic fungi produce many economic and ecological problems worldwide, which must be controlled with potent fungicides. Here we propose the green synthesis of fungicides, which consist of copper nanoparticles (Cu-NPs) prepared in aqueous media. Through experiments, the antifungal efficacy against , sp., and was investigated. Although the antifungal activity differs for each fungal species, it was found that the Cu-NPs induce strong morphological changes in the mycelium. Additionally, the damage of the cell membranes of the pathogens was revealed by microscopic observations. For the three evaluated fungi, fluorescence microscopy demonstrated the intracellular generation of reactive oxygen species in the mycelium. This work proves that the green-synthesized Cu-NPs are potential fungicides against , sp., and .
以经济高效且环保的方式制造杀菌剂对农业尤为重要。植物病原真菌在全球范围内造成诸多经济和生态问题,必须使用强效杀菌剂加以控制。在此,我们提出杀菌剂的绿色合成方法,该杀菌剂由在水性介质中制备的铜纳米颗粒(Cu-NPs)组成。通过实验,研究了其对[具体真菌名称1]、[具体真菌名称2]菌和[具体真菌名称3]的抗真菌效果。尽管对每种真菌的抗真菌活性有所不同,但发现Cu-NPs会在菌丝体中引发强烈的形态变化。此外,通过显微镜观察揭示了病原体细胞膜的损伤。对于三种评估的真菌,荧光显微镜显示菌丝体中存在细胞内活性氧的产生。这项工作证明绿色合成的Cu-NPs是针对[具体真菌名称1]、[具体真菌名称2]菌和[具体真菌名称3]的潜在杀菌剂。