纳米技术驱动的存储害虫管理解决方案:粮食安全的解决方案

IF 2.3 Q1 AGRICULTURE, MULTIDISCIPLINARY
Madesh Kamalakannan, Kannan Malaichamy*, Soundararajan Raga Palanisamy, Senthilkumar Murugaiyan, Manikanda Boopathi Narayanan, Govindaraju Kasivelu, Vishnu Murugesan and Dineshkumar Selvaraj, 
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引用次数: 0

摘要

全球粮食安全和可持续农业生产是21世纪的重大挑战,需要创新的解决方案,以提高粮食产量,减少收获后损失,减轻环境影响。传统的储存方法往往不能保持谷物和种子的营养品质,导致大量损失。在这种情况下,纳米技术通过提供有效的害虫管理和延长储存产品的保质期,提供了有希望的替代方案。纳米材料(NMs)和纳米配方(NFs)显示出独特的特性,如增强的屏障效应、可控释放和结构稳定性,这对减轻害虫侵害至关重要。研究NMs的理化性质及其在害虫防治中的功能响应之间的相关性,对优化NMs的应用具有重要意义。此外,NMs在害虫系统的细胞和分子水平上相互作用,破坏了关键的生物过程,从而提高了害虫防治效率。本文综述了不同农药在病虫害防治中的最新发展趋势和应用,强调了其调节环境条件的潜力,从而显著减少采后损失。由于越来越多的证据表明NMs的有效性和可持续性,市场对其用于存储害虫控制的采用正在增长。随着气候变化和全球蛋白质需求的增加,迫切需要向基于纳米技术的储存解决方案过渡,以确保可持续的粮食供应。该框架强调了粮食储存管理机构和粮食储存机构如何在储存管理方面取得重大进展,从而为实现全球粮食安全目标作出贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nanotechnology-Driven Solutions for Storage Insect Pest Management: A Solution for Food Security

Global food security and sustainable agricultural production are critical challenges in the 21st century, requiring innovative solutions that enhance food production, reduce postharvest losses, and mitigate environmental impact. Conventional storage methods often fail to preserve the nutritional quality of grains and seeds, leading to substantial losses. In this context, nanotechnology offers promising alternatives by providing efficient pest management and extending the shelf life of stored products. Nanomaterials (NMs) and nanoformulations (NFs) have shown unique properties such as enhanced barrier effects, controlled release, and structural stability, which are critical in mitigating insect pest infestations. The correlation between the physicochemical properties of NMs and their functional responses in pest management is essential to optimize their application. Additionally, NMs interact at the cellular and molecular levels within pest systems, disrupting key biological processes, which enhances their pest control efficiency. This review explores the latest trends in the development and application of different NMs in pest management, emphasizing their potential to regulate environmental conditions, which significantly reduce postharvest losses. The market adoption of NMs for storage pest control is growing, driven by increasing evidence of their effectiveness and sustainability. As climate change and global protein demand escalate, there is an urgent need to transition to nanotechnology-based storage solutions to ensure a sustainable food supply. This framework highlights how NMs and NFs can provide critical advancements in storage management, contributing to food security goals worldwide.

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