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用于植物疾病诊断与治疗的纳米材料:综述

Nanomaterials for Plant Disease Diagnosis and Treatment: A Review.

作者信息

Carrillo-Lopez Luis M, Villanueva-Verduzco Clemente, Villanueva-Sánchez Evert, Fajardo-Franco Marja L, Aguilar-Tlatelpa Martín, Ventura-Aguilar Rosa I, Soto-Hernández Ramón Marcos

机构信息

Consejo Nacional de Humanidades, Ciencias y Tecnologías-Botánica, Colegio de Postgraduados Campus Montecillo, Carretera Mexico-Texcoco Km. 36.5, Texcoco 56230, Mexico.

Departamento de Fitotecnia, Universidad Autónoma Chapingo, Carretera México-Texcoco Km. 38.5, Chapingo 56230, Estado de México, Mexico.

出版信息

Plants (Basel). 2024 Sep 20;13(18):2634. doi: 10.3390/plants13182634.

Abstract

Currently, the excessive use of pesticides has generated environmental pollution and harmful effects on human health. The controlled release of active ingredients through the use of nanomaterials (NMs) appears to reduce human exposure and ecosystem alteration. Although the use of NMs can offer an alternative to traditional methods of disease diagnosis and control, it is necessary to review the current approach to the application of these NMs. This review describes the most recent and significant advances in using NMs for diagnosing and treating plant diseases (bacteria, phytopathogenic fungi, viruses, and phytopathogenic nematodes) in cultivated plants. Most studies have focused on reducing, delaying, or eliminating bacteria, fungi, viruses, and nematodes in plants. Both metallic (including metal oxides) and organic nanoparticles (NPs) and composites are widely used in diagnosing and controlling plant diseases due to their biocompatibility and ease of synthesis. Few studies have been carried out with regard to carbon-based NPs due to their toxicity, so future studies should address the development of detection tools, ecological and economic impacts, and human health. The synergistic effect of NMs as fertilizers and pesticides opens new areas of knowledge on the mechanisms of action (plant-pathogen-NMs interaction), the interaction of NMs with nutrients, the effects on plant metabolism, and the traceability of NMs to implement sustainable approaches. More studies are needed involving in vivo models under international regulations to ensure their safety. There is still controversy in the release of NMs into the environment because they could threaten the stability and functioning of biological systems, so research in this area needs to be improved.

摘要

目前,农药的过度使用已造成环境污染并对人类健康产生有害影响。通过使用纳米材料(NMs)来控制活性成分的释放,似乎可以减少人类接触并降低对生态系统的改变。尽管使用纳米材料可为传统的疾病诊断和防治方法提供替代方案,但有必要审视当前这些纳米材料的应用方式。本综述描述了在利用纳米材料诊断和治疗栽培植物中的植物病害(细菌、植物病原真菌、病毒和植物病原线虫)方面的最新重大进展。大多数研究都集中在减少、延缓或消除植物中的细菌、真菌、病毒和线虫。金属(包括金属氧化物)、有机纳米颗粒(NPs)及其复合材料因其生物相容性和易于合成,被广泛用于诊断和防治植物病害。由于碳基纳米颗粒具有毒性,因此针对其开展的研究较少,所以未来的研究应关注检测工具的开发、生态和经济影响以及对人类健康的影响。纳米材料作为肥料和农药的协同效应为作用机制(植物 - 病原体 - 纳米材料相互作用)、纳米材料与养分的相互作用、对植物新陈代谢的影响以及纳米材料的可追溯性等方面开辟了新的知识领域,以实现可持续发展的方法。需要开展更多符合国际法规的体内模型研究,以确保其安全性。纳米材料向环境中的释放仍存在争议,因为它们可能威胁生物系统的稳定性和功能,所以该领域的研究需要改进。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/507b/11434773/59bad5d029c0/plants-13-02634-g001.jpg

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