Nanotechnology: Recent Progress in Agriculture and Effects on Physiology of Plants

Muhamad Fairus Noor Hassim, Ng Lee Chuen, Mohd Sabri Mohd Ghazali, Aziz Ahmad
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引用次数: 1

Abstract

The naturally occurring and synthesised nanoparticles (NPs) display significant effects on the physiology of plants. This paper emphasised the current application of synthetic NPs in agriculture, several advantages and physiological responses during the growth of plants. Nano pore size of particles provides higher surface areas hence enhances the water holding capacity of the soil, efficacy delivery of fertilisers and pesticides (pest and diseases infestation) on crops. The application of NPs via soil or mist involves uptake by plant via roots or foliar cell wall and translocation to other organs through vascular system and plasmodesmata within the cells. The physicochemical properties of NPs have advantages including enabling the increase of soil water retention in mitigating the drought and/or salinity stresses in plants. Nanoparticles enhance the germination of seed and maintain plant growth by promoting the production of enzymes in scavenging oxygen radicals, phytohormone balancing, nutrient metabolisms and expression of amino acid biosynthetic genes and photosystem. Given the diverse physiological and molecular effects of NPs, precautionary steps prior to their application either as fertiliser or carrier should be considered to avoid toxicity and destructive effects on plants, animals, water body and the environment.
纳米技术:农业的最新进展及其对植物生理的影响
自然产生和合成的纳米颗粒(NPs)对植物的生理有显著的影响。本文着重介绍了合成NPs在农业上的应用现状、几种优势及其在植物生长中的生理反应。纳米孔径的颗粒提供了更高的表面积,从而增强了土壤的持水能力,有效地向作物输送肥料和农药(虫害和疾病侵袭)。NPs通过土壤或雾的施用涉及植物通过根或叶面细胞壁吸收,并通过细胞内的维管系统和胞间连丝转运到其他器官。NPs的理化性质具有增加土壤保水、减轻植物干旱和/或盐胁迫等优点。纳米粒子通过促进氧自由基清除酶的产生、植物激素平衡、营养物质代谢、氨基酸生物合成基因和光系统的表达,促进种子萌发和维持植物生长。鉴于NPs的多种生理和分子效应,在将其作为肥料或载体施用之前应考虑采取预防措施,以避免对植物、动物、水体和环境产生毒性和破坏性影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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