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Uptake Accumulation and Toxicity of Silver Nanoparticle in Autotrophic Plants and Heterotrophic Microbes: A Concentric Review

机译:自养植物和异养微生物对纳米银的吸收积累和毒性:同心研究

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摘要

Nanotechnology is a cutting-edge field of science with the potential to revolutionize today’s technological advances including industrial applications. It is being utilized for the welfare of mankind; but at the same time, the unprecedented use and uncontrolled release of nanomaterials into the environment poses enormous threat to living organisms. Silver nanoparticles (AgNPs) are used in several industries and its continuous release may hamper many physiological and biochemical processes in the living organisms including autotrophs and heterotrophs. The present review gives a concentric know-how of the effects of AgNPs on the lower and higher autotrophic plants as well as on heterotrophic microbes so as to have better understanding of the differences in effects among these two groups. It also focuses on the mechanism of uptake, translocation, accumulation in the plants and microbes, and resulting toxicity as well as tolerance mechanisms by which these microorganisms are able to survive and reduce the effects of AgNPs. This review differentiates the impact of silver nanoparticles at various levels between autotrophs and heterotrophs and signifies the prevailing tolerance mechanisms. With this background, a comprehensive idea can be made with respect to the influence of AgNPs on lower and higher autotrophic plants together with heterotrophic microbes and new insights can be generated for the researchers to understand the toxicity and tolerance mechanisms of AgNPs in plants and microbes.
机译:纳米技术是科学的前沿领域,具有改变当今包括工业应用在内的技术进步的潜力。它被用于人类的福利;但与此同时,纳米材料的前所未有的使用和向环境中的无控制释放对生物体构成了巨大威胁。银纳米颗粒(AgNPs)已在多个行业中使用,其连续释放可能会阻碍包括自养生物和异养生物在内的活生物体的许多生理和生化过程。本综述提供了有关AgNPs对较低和较高自养植物以及对异养微生物的作用的同心知识,以便更好地了解这两组之间的作用差异。它还着重于植物和微生物的吸收,转运,积累机制以及由此产生的毒性以及这些微生物能够生存并减少AgNP的影响的耐受机制。这篇综述区分了自养生物和异养生物在不同水平上银纳米颗粒的影响,并指出了普遍的耐受机制。在这种背景下,可以就AgNPs对异养微生物对高低自养植物的影响提出一个综合的想法,并且可以为研究人员提供新的见解,以了解AgNPs在植物和微生物中的毒性和耐受机制。

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