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用于植物病害管理中生物分子递送的先进纳米策略。

Advanced Nanostrategies for Biomolecule Delivery in Plant Disease Management.

作者信息

Sangwan Anju, Singh Neetu

机构信息

Centre for Biomedical Engineering, Indian Institute of Technology Delhi, Hauz Khas, New Delhi 110016, India.

Biomedical Engineering Unit, All India Institute of Medical Sciences, Ansari Nagar, New Delhi 110029, India.

出版信息

J Agric Food Chem. 2025 Jan 8;73(1):66-84. doi: 10.1021/acs.jafc.4c08396. Epub 2024 Dec 23.

Abstract

Sustainable plant disease management has long been a major issue in agriculture since the excessive reliance on broad-spectrum pesticides exacerbates chemical resistance, presenting environmental and health hazards. Taking cues from nature's intricate defense mechanisms, scientists are exploiting bioactive agents involved in plant-pathogen/pest interactions to develop novel strategies to combat diseases. Embracing biomolecules in agriculture offers an ecofriendly alternative to chemical pesticides. However, traditional delivery methods for biomolecules often suffer from low utilization rates and low field stability, diminishing the overall effectiveness of active compounds. The advent of nanotechnology has facilitated the design of novel delivery systems for biomolecular cargos, further enhancing their capacity to adhere to plant surfaces and make disease control strategies effective. Tailored depending upon the extent of infection and type of plant species, innovative nanoparticle strategies maximize the effectiveness of delivery by modifying the size, surface characteristics, and adhesion capacity of the particles to suit particular requirements. This review examines how the various biological factors involved in innate plant defenses can be exploited, as well as the potential of various nanocarriers in biomolecule delivery for plant disease management.

摘要

长期以来,可持续植物病害管理一直是农业领域的一个主要问题,因为过度依赖广谱农药会加剧抗药性,带来环境和健康危害。科学家们从大自然复杂的防御机制中获得灵感,正在利用参与植物与病原体/害虫相互作用的生物活性剂来开发对抗病害的新策略。在农业中采用生物分子为化学农药提供了一种生态友好的替代方案。然而,传统的生物分子递送方法往往利用率低且田间稳定性差,降低了活性化合物的整体效果。纳米技术的出现促进了用于生物分子载体的新型递送系统的设计,进一步提高了它们附着在植物表面的能力,并使病害控制策略更有效。根据感染程度和植物物种类型进行定制,创新的纳米颗粒策略通过改变颗粒的大小、表面特性和粘附能力以满足特定要求,从而最大限度地提高递送效果。本综述探讨了如何利用植物先天防御中涉及的各种生物因素,以及各种纳米载体在生物分子递送用于植物病害管理方面的潜力。

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