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工程纳米材料(ENMs)对具有环境相关性的有益土壤细菌的纳米毒性——批判性综述。

Nanotoxicity of engineered nanomaterials (ENMs) to environmentally relevant beneficial soil bacteria - a critical review.

机构信息

a Rhizosphere Science Laboratory, Department of Plant and Soil Sciences , University of Kentucky , Lexington , KY , USA.

b CSIRO Land and Water , Ecosciences Precinct , Brisbane , Australia.

出版信息

Nanotoxicology. 2019 Apr;13(3):392-428. doi: 10.1080/17435390.2018.1530391. Epub 2019 Feb 14.

Abstract

Deposition of engineered nanomaterials (ENMs) in various environmental compartments is projected to continue rising exponentially. Terrestrial environments are expected to be the largest repository for environmentally released ENMs. Because ENMs are enriched in biosolids during wastewater treatment, agriculturally applied biosolids facilitate ENM exposure of key soil micro-organisms, such as plant growth-promoting rhizobacteria (PGPR). The ecological ramifications of increasing levels of ENM exposure of terrestrial micro-organisms are not clearly understood, but a growing body of research has investigated the toxicity of ENMs to various soil bacteria using a myriad of toxicity end-points and experimental procedures. This review explores what is known regarding ENM toxicity to important soil bacteria, with a focus on ENMs which are expected to accumulate in terrestrial ecosystems at the highest concentrations and pose the greatest potential threat to soil micro-organisms having potential indirect detrimental effects on plant growth. Knowledge gaps in the fundamental understanding of nanotoxicity to bacteria are identified, including the role of physicochemical properties of ENMs in toxicity responses, particularly in agriculturally relevant micro-organisms. Strategies for improving the impact of future research through the implementation of in-depth ENM characterization and use of necessary experimental controls are proposed. The future of nanotoxicological research employing microbial ecoreceptors is also explored, highlighting the need for continued research utilizing bacterial isolates while concurrently expanding efforts to study ENM-bacteria interactions in more complex environmentally relevant media, e.g. soil. Additionally, the particular importance of future work to extensively examine nanotoxicity in the context of bacterial ecosystem function, especially of plant growth-promoting agents, is proposed.

摘要

工程纳米材料(ENMs)在各种环境介质中的沉积预计将继续呈指数级增长。陆地环境预计将成为环境释放的 ENMs 的最大储存库。由于 ENMs 在废水处理过程中富积在生物固体中,因此农业应用的生物固体促进了关键土壤微生物(如植物促生根际细菌(PGPR))暴露于 ENMs。陆地微生物不断增加的 ENM 暴露水平的生态影响尚不清楚,但越来越多的研究使用各种毒性终点和实验程序调查了 ENMs 对各种土壤细菌的毒性。本综述探讨了关于 ENM 对重要土壤细菌的毒性的已知情况,重点是预计在陆地生态系统中积累浓度最高且对具有潜在间接不利影响的土壤微生物构成最大潜在威胁的 ENMs 对植物生长。确定了对细菌的纳米毒性的基本理解中的知识空白,包括 ENMs 的物理化学性质在毒性反应中的作用,特别是在农业相关微生物中。提出了通过实施深入的 ENM 特性描述和使用必要的实验对照来提高未来研究影响的策略。还探讨了利用微生物生态受体进行纳米毒理学研究的未来,强调了在同时努力在更复杂的环境相关介质(例如土壤)中研究 ENM-细菌相互作用的同时,继续利用细菌分离物研究纳米毒性的必要性。此外,还提出了在细菌生态系统功能,特别是在植物促生剂的背景下广泛研究纳米毒性的未来工作的特别重要性。

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