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The Effect of Silver Nanoparticles on Seasonal Change in Arctic Tundra Bacterial and Fungal Assemblages

机译:银纳米颗粒对北极苔原细菌和真菌集合体季节性变化的影响

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摘要

The impact of silver nanoparticles (NPs) and microparticles (MPs) on bacterial and fungal assemblages was studied in soils collected from a low arctic site. Two different concentrations (0.066% and 6.6%) of Ag NPs and Ag MPs were tested in microcosms that were exposed to temperatures mimicking a winter to summer transition. Toxicity was monitored by differential respiration, phospholipid fatty acid analysis, polymerase chain reaction-denaturing gradient gel electrophoresis and DNA sequencing. Notwithstanding the effect of Ag MPs, nanosilver had an obvious, additional impact on the microbial community, underscoring the importance of particle size in toxicity. This impact was evidenced by levels of differential respiration in 0.066% Ag NP-treated soil that were only half that of control soils, a decrease in signature bacterial fatty acids, and changes in both richness and evenness in bacterial and fungal DNA sequence assemblages. Prominent after Ag NP-treatment were Hypocreales fungi, which increased to 70%, from only 1% of fungal sequences under control conditions. Genera within this Order known for their antioxidant properties (Cordyceps/Isaria) dominated the fungal assemblage after NP addition. In contrast, sequences attributed to the nitrogen-fixing Rhizobiales bacteria appeared vulnerable to Ag NP-mediated toxicity. This combination of physiological, biochemical and molecular studies clearly demonstrate that Ag NPs can severely disrupt the natural seasonal progression of tundra assemblages.
机译:在从北极低地收集的土壤中研究了银纳米颗粒(NPs)和微粒(MPs)对细菌和真菌组合的影响。在暴露于模拟冬天到夏天的温度的微观世界中,测试了两种不同浓度的Ag NP和Ag MP(0.066%和6.6%)。通过差异呼吸,磷脂脂肪酸分析,聚合酶链反应-变性梯度凝胶电泳和DNA测序来监测毒性。尽管有Ag MPs的作用,但纳米银对微生物群落具有明显的其他影响,从而强调了粒度在毒性中的重要性。 0.066%Ag NP处理的土壤的差异呼吸水平仅是对照土壤的一半,特征性细菌脂肪酸减少,细菌和真菌DNA序列组合的丰富度和均匀度都发生了变化,从而证明了这种影响。 Ag NP处理后的主要是Hypocreales真菌,其在对照条件下仅从真菌序列的1%增加到70%。加入NP后,以其抗氧化特性(冬虫夏草/ Isaria)而闻名的属主导了真菌的组合。相反,归因于固氮根瘤菌的序列似乎易受Ag NP介导的毒性作用。生理,生化和分子研究的这种结合清楚地表明,Ag NPs可以严重破坏苔原组合的自然季节性进程。

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