Interaction of silver nanoparticles with plants: A focus on the phytotoxicity, underlying mechanism, and alleviation strategies

Sneha Tripathi, Shivani Mahra, Samarth Sharma, Sobhitha Mathew, Shivesh Sharma
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Abstract

The unprecedented increase in the use of nanoparticles (NPs) in domestic and industrial applications has led to their gradual accumulation in plant systems, posing a severe threat to the environment. Given that these silver NPs (AgNPs), are well known to be frequently employed nanomaterials (NMs) in commercial applications. So, it raises substantial concern regarding their accumulation, interaction, and subsequent adverse impacts on the plant. It is crucial to comprehend the effects of these novel technologies on plant health, such as nano fertilisers that contain materials like AgNPs, as the agricultural sector embraces them. Studying the possible phytotoxic effects of these NPs is not only a scientific need but also a duty to protect the stability and safety of our food systems, as plants are essential to life on Earth. In order to close the gap between environmental sustainability and technological growth, this exploration is crucial. The present review highlights the AgNPs' uptake and translocation in plants and the subsequent phytotoxic effect witnessed by estimating plants' morphological, physiological, molecular, and biochemical parameters. Additionally, the paper summarizes alleviation strategies that could help to bypass NP-mediated stress through detoxification mechanisms.

银纳米粒子与植物的相互作用:关注植物毒性、潜在机制和缓解策略
纳米粒子(NPs)在家庭和工业应用中的使用量空前增加,导致其在植物系统中逐渐积累,对环境构成严重威胁。众所周知,银纳米粒子(AgNPs)是商业应用中经常使用的纳米材料(NMs)。因此,人们非常关注它们的积累、相互作用以及随后对植物的不利影响。随着农业部门对纳米肥料(如含有 AgNPs 等材料的纳米肥料)的青睐,了解这些新技术对植物健康的影响至关重要。研究这些纳米粒子可能产生的植物毒性影响不仅是科学需要,也是保护食品系统稳定和安全的责任,因为植物是地球上生命的基本要素。为了缩小环境可持续性与技术增长之间的差距,这一探索至关重要。本综述通过估测植物的形态、生理、分子和生化参数,重点介绍了 AgNPs 在植物体内的吸收和转运以及随后的植物毒性效应。此外,本文还总结了有助于通过解毒机制绕过 NP 介导的压力的缓解策略。
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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CiteScore
2.80
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