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金属纳米颗粒对导致柠檬采后主要病害的抗真菌剂耐药病原体的抗真菌作用

Antifungal Action of Metallic Nanoparticles Against Fungicide-Resistant Pathogens Causing Main Postharvest Lemon Diseases.

作者信息

Baigorria Carina G, Cerioni Luciana, Debes Mario A, Ledesma Ana E, Alastuey Patricio, Tirado Mónica, Volentini Sabrina I, Rapisarda Viviana A

机构信息

Instituto Superior de Investigaciones Biológicas (INSIBIO), CONICET-UNT, and Instituto de Química Biológica "Dr. Bernabé Bloj", Facultad de Bioquímica, Química y Farmacia, UNT, San Miguel de Tucumán 4000, Argentina.

Cátedra de Anatomía Vegetal, Facultad de Ciencias Naturales e Instituto Miguel Lillo, UNT, San Miguel de Tucumán 4000, Argentina.

出版信息

J Fungi (Basel). 2024 Nov 11;10(11):782. doi: 10.3390/jof10110782.

Abstract

Postharvest fungal diseases are the main cause of economic losses in lemon production. The continued use of synthetic fungicides to control the diseases favors the emergence of resistant strains, which encourages the search for alternatives. The aim of this study was to assess the efficacy of metallic nanoparticles (NPs) as antifungal agents against local isolates of and , each of them in a fungicide-sensitive and -resistant version, and a isolate. NPs of ZnO, CuO, and Ag were synthesized and characterized by spectroscopy and microscopy, presenting average sizes < 25 nm and spherical shapes. ZnO-NPs did not present antifungal activity at the assayed conditions, while the minimum fungicidal concentrations (MFCs) were 1000 and 10 µg mL for CuO-NPs and Ag-NPs, respectively. The NPs' antimicrobial action included conidial membrane permeability and strong intracellular disorganization. Moreover, the Ag-NPs reduced green mold incidence on inoculated lemons when applied to the fruit. Taken together, Ag-NPs were effective in inhibiting both fungicide-sensitive and -resistant isolates of the main lemon postharvest pathogens, suggesting their potential use as an alternative approach.

摘要

采后真菌病害是柠檬生产中造成经济损失的主要原因。持续使用合成杀菌剂来控制这些病害会促使抗性菌株的出现,这就促使人们寻找替代方法。本研究的目的是评估金属纳米颗粒(NPs)作为抗真菌剂对本地分离的 和 的效果,它们分别有对杀菌剂敏感和抗性的类型,以及一种 分离株。通过光谱学和显微镜对ZnO、CuO和Ag的纳米颗粒进行了合成和表征,其平均尺寸<25nm且呈球形。在测定条件下,ZnO-NPs没有表现出抗真菌活性,而CuO-NPs和Ag-NPs的最小杀菌浓度(MFCs)分别为1000和10μg/mL。纳米颗粒的抗菌作用包括分生孢子膜通透性和强烈的细胞内紊乱。此外,将Ag-NPs应用于果实后,可降低接种柠檬上绿霉病的发生率。综上所述,Ag-NPs可有效抑制柠檬采后主要病原菌的杀菌剂敏感和抗性分离株,表明其作为替代方法的潜在用途。

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