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基于生物启发的银纳米粒子的纳米复合材料可有效控制植物病原体:综述。

Bioinspired silver nanoparticle-based nanocomposites for effective control of plant pathogens: A review.

机构信息

Department of Biological and Environmental Science, Dongguk University-Seoul, 32 Dongguk-ro, Ilsandong-gu, Goyang-si 10326, Gyeonggi-do, Republic of Korea.

Department of Chemical Engineering, Konkuk University, Seoul 05029, Republic of Korea.

出版信息

Sci Total Environ. 2024 Jan 15;908:168318. doi: 10.1016/j.scitotenv.2023.168318. Epub 2023 Nov 11.

Abstract

Plant pathogens, including bacteria, fungi, and viruses, pose significant challenges to the farming community due to their extensive diversity, the rapidly evolving phenomenon of multi-drug resistance (MDR), and the limited availability of effective control measures. Amid mounting global pressure, particularly from the World Health Organization, to limit the use of antibiotics in agriculture and livestock management, there is increasing consideration of engineered nanomaterials (ENMs) as promising alternatives for antimicrobial applications. Studies focusing on the application of ENMs in the fight against MDR pathogens are receiving increasing attention, driven by significant losses in agriculture and critical knowledge gaps in this crucial field. In this review, we explore the potential contributions of silver nanoparticles (AgNPs) and their nanocomposites in combating plant diseases, within the emerging interdisciplinary arena of nano-phytopathology. AgNPs and their nanocomposites are increasingly acknowledged as promising countermeasures against plant pathogens, owing to their unique physicochemical characteristics and inherent antimicrobial properties. This review explores recent advancements in engineered nanocomposites, highlights their diverse mechanisms for pathogen control, and draws attention to their potential in antibacterial, antifungal, and antiviral applications. In the discussion, we briefly address three crucial dimensions of combating plant pathogens: green synthesis approaches, toxicity-environmental concerns, and factors influencing antimicrobial efficacy. Finally, we outline recent advancements, existing challenges, and prospects in scholarly research to facilitate the integration of nanotechnology across interdisciplinary fields for more effective treatment and prevention of plant diseases.

摘要

植物病原体,包括细菌、真菌和病毒,由于其广泛的多样性、多药耐药性(MDR)的快速演变现象以及有效控制措施的有限可用性,对农业社区构成了重大挑战。在全球范围内的压力越来越大的情况下,特别是世界卫生组织(WHO)要求限制抗生素在农业和牲畜管理中的使用,人们越来越关注工程纳米材料(ENMs)作为抗菌应用的有前途的替代品。由于农业方面的重大损失和这一关键领域的知识空白,研究人员越来越关注将 ENMs 应用于对抗 MDR 病原体的研究。在纳米植物病理学这一新兴的跨学科领域中,我们探讨了银纳米粒子(AgNPs)及其纳米复合材料在防治植物病害方面的潜在贡献。AgNPs 及其纳米复合材料因其独特的物理化学特性和固有抗菌特性,被越来越多地认为是对抗植物病原体的有希望的对策。本综述探讨了工程纳米复合材料的最新进展,强调了它们在控制病原体方面的多种机制,并关注了它们在抗菌、抗真菌和抗病毒应用中的潜力。在讨论中,我们简要讨论了防治植物病原体的三个关键方面:绿色合成方法、毒性-环境问题以及影响抗菌功效的因素。最后,我们概述了最新进展、现有挑战和研究前景,以促进纳米技术在跨学科领域的整合,从而更有效地治疗和预防植物病害。

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