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纳米技术在蔬菜作物上的应用。

Applications of nanotechnology on vegetable crops.

机构信息

Vegetable Research Department, National Research Centre, 33 El Bohouth St., Dokki, Giza, P.O. 12622, Egypt.

Polymers and Pigments Department, National Research Centre, 33 El Bohouth St., Dokki, Giza, P.O. 12622, Egypt.

出版信息

Chemosphere. 2021 Mar;266:129026. doi: 10.1016/j.chemosphere.2020.129026. Epub 2020 Nov 19.

Abstract

Agriculture is the backbone of most developing countries, and most of their people depend on it for their livelihood. The world population is increased by approximately 83 million people each year, so there is a need to increase agricultural productivity. At present, productivity growth can be achieved either by expanding the area cultivated or increasing crop yields through improving the efficiency of fertilizers used. Therefore, there has been a trend to use modern technologies, such as nanotechnology (NT), to increase the productivity of plants. Where, it is involved in the food production process, from planting to packaging. NT improves plants' ability to absorb nutrients, and the agronomic properties of soil, which improves plant growth and productivity. Economically, NT increased the efficiency of nano-fertilizers, and so contributed to increasing productivity and the production of crops. However, the study of the effect of nanotechnology on the environment of soils and plants did not receive the required study. In this review, a comprehensive survey is exhibited on NT as an effective method in dealing with the problem of fertilizer loss during irrigation. This review discusses the technologies and applications of the latest research findings in this field. Furthermore, this review deals with the forms and types of nanoparticles and the methods of their transmission in plants, as well as their effect on plants (physiological and DNA) as well as on those who eat those plants.

摘要

农业是大多数发展中国家的支柱,大多数人依赖农业维持生计。全球人口每年增加约 8300 万人,因此需要提高农业生产力。目前,可以通过扩大耕种面积或通过提高肥料使用效率来提高作物产量来实现生产力增长。因此,人们一直倾向于使用现代技术,如纳米技术 (NT),来提高植物的生产力。其中,纳米技术涉及从种植到包装的整个食品生产过程。NT 提高了植物吸收养分的能力和土壤的农艺特性,从而促进了植物的生长和生产力。从经济角度来看,NT 提高了纳米肥料的效率,从而有助于提高生产力和作物产量。然而,纳米技术对土壤和植物环境的影响研究并未得到应有的重视。在这篇综述中,全面展示了 NT 作为一种处理灌溉过程中肥料损失问题的有效方法。本文讨论了该领域最新研究成果的技术和应用。此外,本文还介绍了纳米颗粒的形式和类型以及它们在植物中的传输方式,以及它们对植物(生理和 DNA)以及食用这些植物的人的影响。

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