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Chitosan-Based Agronanochemicals as a Sustainable Alternative in Crop Protection

机译:基于壳聚糖的农用化学品可作为作物保护的可持续替代品

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摘要

The rise in the World’s food demand in line with the increase of the global population has resulted in calls for more research on the production of sustainable food and sustainable agriculture. A natural biopolymer, chitosan, coupled with nanotechnology could offer a sustainable alternative to the use of conventional agrochemicals towards a safer agriculture industry. Here, we review the potential of chitosan-based agronanochemicals as a sustainable alternative in crop protection against pests, diseases as well as plant growth promoters. Such effort offers better alternatives: (1) the existing agricultural active ingredients can be encapsulated into chitosan nanocarriers for the formation of potent biocides against plant pathogens and pests; (2) the controlled release properties and high bioavailability of the nanoformulations help in minimizing the wastage and leaching of the agrochemicals’ active ingredients; (3) the small size, in the nanometer regime, enhances the penetration on the plant cell wall and cuticle, which in turn increases the argochemical uptake; (4) the encapsulation of agrochemicals in chitosan nanocarriers shields the toxic effect of the free agrochemicals on the plant, cells and DNA, thus, minimizing the negative impacts of agrochemical active ingredients on human health and environmental wellness. In addition, this article also briefly reviews the mechanism of action of chitosan against pathogens and the elicitations of plant immunity and defense response activities of chitosan-treated plants.
机译:随着全球人口的增长,世界粮食需求的增长促使人们呼吁对可持续粮食生产和可持续农业进行更多的研究。天然生物聚合物壳聚糖与纳米技术的结合,可以为使用传统农用化学品提供可持续的替代方法,从而实现更安全的农业产业。在这里,我们回顾了基于壳聚糖的农用化学品的潜在潜力,可以作为作物抗病虫害和植物生长促进剂的可持续替代品。这样的努力提供了更好的选择:(1)现有的农业活性成分可以被封装在壳聚糖纳米载体中,以形成有效的杀菌剂来对抗植物病原体和害虫。 (2)纳米制剂的控释特性和高生物利用度有助于最大程度地减少农药化学成分的浪费和浸出; (3)在纳米范围内的小尺寸,增加了对植物细胞壁和表皮的渗透,继而增加了对植物化学物质的吸收; (4)将农用化学品封装在壳聚糖纳米载体中可屏蔽游离农用化学品对植物,细胞和DNA的毒性作用,从而最大程度地减少了农用化学品活性成分对人体健康和环境健康的负面影响。此外,本文还简要回顾了壳聚糖对病原体的作用机理以及对壳聚糖处理过的植物的免疫力和防御反应活性的诱发作用。

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