Department of Biological Sciences , Birla Institute of Technology and Science Pilani , KK Birla Goa Campus, Zuarinagar , Goa 403726 , India.
J Agric Food Chem. 2018 Aug 22;66(33):8647-8661. doi: 10.1021/acs.jafc.8b00691. Epub 2018 Aug 8.
Plant mineral nutrition is important for obtaining higher agricultural productivity to meet the future demands of the increasing global human population. It is envisaged that nanotechnology can provide sustainable solutions by replacing traditional bulk fertilizers with their nanoparticulate counterparts possessing superior properties to overcome the current challenges of bioavailability and uptake of minerals, increasing crop yield, reducing fertilizer wastage, and protecting the environment. Recent studies have shown that nanoparticles of essential minerals and nonessential elements affect plant growth, physiology, and development, depending on their size, composition, concentration, and mode of application. The current review includes the recent findings on the positive as well as negative effects that nanofertilizers exert on plants when applied via foliar and soil routes, their effects on plant associated microorganisms, and potential for controlling agricultural pests. This review suggests future research needed for the development of sustained release nanofertilizers for enhancing food production and environmental protection.
植物矿物营养对于提高农业生产力以满足未来全球人口增长的需求至关重要。人们预计,纳米技术可以通过用具有优越性能的纳米颗粒替代传统的大量肥料来提供可持续的解决方案,以克服目前矿物质生物利用度和吸收的挑战,提高作物产量,减少肥料浪费,并保护环境。最近的研究表明,必需矿物质和非必需元素的纳米颗粒会根据其大小、组成、浓度和应用方式影响植物的生长、生理和发育。本综述包括了纳米肥料通过叶面和土壤途径施用对植物产生的积极和消极影响、对植物相关微生物的影响以及控制农业害虫的潜力等方面的最新发现。本综述建议未来需要开展研究,以开发可持续释放的纳米肥料,从而提高粮食生产和环境保护。