商用纳米银颗粒对稻瘟病病原体 Magnaporthe oryzae 的抗真菌潜力

QM Mahmud, Mai Khan, AM Akanda, MM Hossain, MA Latif, R. Akter
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摘要

由 Magnaporthe oryzae 引起的稻瘟病是孟加拉国水稻可持续生产面临的主要和经常性威胁之一。为缓解这一问题,本研究旨在调查市售纳米银粒子(Ag-NPs)对木格氏真菌生长和发育的抑制作用,以及对稻瘟病的防治效果。体外实验表明,Ag-NPs 能显著抑制真菌菌丝的径向生长,其中浓度为 250 ppm 时抑制率最高(83.54%),而浓度为 400 ppm 的 Trooper 75 WP 能完全抑制真菌菌丝的生长。Ag-NPs 处理还能显著减少分生孢子的产生和菌落的形成。此外,Ag-NPs 对 M. oryzae 分生孢子的萌发也有很大的抑制作用,浓度在 200 至 250 ppm 时可观察到完全抑制作用。比较分析表明,Ag-NPs 的杀菌效果优于硝酸银(AgNO3),这表明纳米特性具有更强的活性。通过计算 EC50 值和 EC95 值,确定了 M. oryzae 对 Ag-NPs 的敏感性,结果表明平均 EC50 值为 131.5 ppm,平均 EC95 值为 276 ppm。此外,体内实验表明,Ag-NPs 的预防性和治疗性处理可显著降低感染 M. oryzae 的水稻植株的发病率和严重程度,药效与杀菌剂 Trooper 75 WP 相当。在 Ag-NPs 浓度较高的情况下,预防性处理比治疗性处理更能有效控制病害。这些发现凸显了 Ag-NPs 作为稻瘟病防治的有效替代品的潜力。Bangladesh Agric.(2023) 27 (1):17-30
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Antifungal potential of commercial silver nanoparticles against rice blast pathogen Magnaporthe oryzae
The rice blast caused by Magnaporthe oryzae is one of the major and recurrent threats to sustainable rice production in Bangladesh. To mitigate this problem, the present study was undertaken with the aim to investigate the inhibitory effects of commercially available silver nanoparticles (Ag-NPs) on the growth and development of Magnaporthe oryzae, and control of rice blast disease. In vitro experiments demonstrated that Ag-NPs significantly suppressed the radial growth of fungal mycelium, with the highest inhibition (83.54%) at a concentration of 250 ppm, while Trooper 75 WP at 400 ppm completely inhibited the fungal mycelial growth. The production of conidia and colony formation were also reduced significantly by Ag-NPs treatment. Furthermore, Ag-NPs exhibited a substantial inhibitory effect on the germination of M. oryzae conidia, with complete inhibition observed at concentrations between 200 and 250 ppm. Comparative analyses revealed that the fungicidal effect of Ag-NPs was superior to silver nitrate (AgNO3), suggesting the augmented activity of the nano properties. The sensitivity of M. oryzae to Ag-NPs was determined by calculating EC50 and EC95 values, which indicated a mean EC50 value of 131.5 ppm and a mean EC95 value of 276 ppm. Additionally, in vivo experiments showed that preventive and curative treatments with Ag-NPs significantly reduced disease incidence and severity in rice plants infected with M. oryzae, with efficacy comparable to that of the fungicide Trooper 75 WP. At higher concentrations of Ag-NPs, preventive treatment was found to be more effective than curative treatment in disease control. These findings highlighted the potential of Ag-NPs as an effective alternative for the management of rice blast. Ann. Bangladesh Agric. (2023) 27 (1): 17-30
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