Zhou Pingfan, Adeel Muhammad, Shakoor Noman, Guo Manlin, Hao Yi, Azeem Imran, Li Mingshu, Liu Mengyuan, Rui Yukui
Beijing Key Laboratory of Farmland Soil Pollution Prevention and Remediation, College of Resources and Environmental Sciences, China Agricultural University, Beijing 100193, China.
Nanomaterials (Basel). 2020 Dec 24;11(1):26. doi: 10.3390/nano11010026.
Nanotechnology is playing a significant role in addressing a vast range of environmental challenges by providing innovative and effective solutions. Heavy metal (HM) contamination has gained considerable attention in recent years due their rapidly increasing concentrations in agricultural soil. Due to their unique physiochemical properties, nanoparticles (NPs) can be effectively applied for stress alleviation. In this review, we explore the current status of the literature regarding nano-enabled agriculture retrieved from the Web of Science databases and published from January 2010 to November 2020, with most of our sources spanning the past five years. We briefly discuss uptake and transport mechanisms, application methods (soil, hydroponic and foliar), exposure concentrations, and their impact on plant growth and development. The current literature contained sufficient information about NPs behavior in plants in the presence of pollutants, highlighting the alleviation mechanism to overcome the HM stress. Furthermore, we present a broad overview of recent advances regarding HM stress and the possible mechanism of interaction between NPs and HM in the agricultural system. Additionally, this review article will be supportive for the understanding of phytoremediation and micro-remediation of contaminated soils and also highlights the future research needs for the combined application of NPs in the soil for sustainable agriculture.
纳米技术通过提供创新且有效的解决方案,在应对一系列广泛的环境挑战中发挥着重要作用。近年来,重金属(HM)污染因其在农业土壤中的浓度迅速增加而备受关注。由于其独特的物理化学性质,纳米颗粒(NPs)可有效地用于缓解胁迫。在本综述中,我们探讨了从科学网数据库检索到的、2010年1月至2020年11月发表的有关纳米农业的文献现状,我们的大部分资料来源涵盖过去五年。我们简要讨论了吸收和运输机制、应用方法(土壤、水培和叶面)、暴露浓度及其对植物生长发育的影响。当前文献包含了关于污染物存在下纳米颗粒在植物中行为的充分信息,突出了克服重金属胁迫的缓解机制。此外,我们对重金属胁迫的最新进展以及纳米颗粒与重金属在农业系统中相互作用的可能机制进行了广泛概述。此外,这篇综述文章将有助于理解污染土壤的植物修复和微修复,并突出纳米颗粒在土壤中联合应用以实现可持续农业的未来研究需求。