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首页> 外文期刊>Journal of environmental sciences >Long-term effects of environmentally relevant concentrations of silver nanoparticles on microbial biomass, enzyme activity, and functional genes involved in the nitrogen cycle of loamy soil
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Long-term effects of environmentally relevant concentrations of silver nanoparticles on microbial biomass, enzyme activity, and functional genes involved in the nitrogen cycle of loamy soil

机译:环状生物质,酶活性和植物氮循环氮循环中的氮素血液活性浓度的长期影响

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The increasing production and use of engineered silver nanoparticles (AgNP) in industry and private households are leading to increased concentrations of AgNP in the environment. An ecological risk assessment of AgNP is needed, but it requires understanding the long term effects of environmentally relevant concentrations of AgNP on the soil microbiome. Hence, the aim of this study was to reveal the long-term effects of AgNP on soil microorganisms. The study was conducted as a laboratory incubation experiment over a period of one year using a loamy soil and AgNP concentrations ranging from 0.01 to 1 mg AgNP/kg soil. The short term effects of AgNP were, in general, limited. However, after one year of exposure to 0.01 mg AgNP/kg, there were significant negative effects on soil microbial biomass (quantified by extractable DNA; p = 0.000) and bacterial ammonia oxidizers (quantified by amoA gene copy numbers; p = 0.009). Furthermore, the tested AgNP concentrations significantly decreased the soil microbial biomass, the leucine aminopeptidase activity (quantified by substrate turnover; p = 0.014), and the abundance of nitrogen fixing microorganisms (quantified by nifH gene copy numbers; p = 0.001). The results of the positive control with AgNO3 revealed predominantly stronger effects due to Ag+ ion release. Thus, the increasing toxicity of AgNP during the test period may reflect the long-term release of Ag+ ions. Nevertheless, even very low concentrations of AgNP caused disadvantages for the microbial soil community, especially for nitrogen cycling, and our results confirmed the risks of releasing AgNP into the environment. (C) 2018 The Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences. Published by Elsevier B.V.
机译:在工业和私人家庭中越来越多的生产和使用在工业和私人家庭中导致环境浓度增加。需要对AGNP进行生态风险评估,但它需要了解环境相关浓度对土壤微生物组的长期影响。因此,本研究的目的是揭示AGNP对土壤微生物的长期影响。该研究在使用0.01至1mg AgNP / kg土壤的植物和AgNP浓度范围内进行了一年的实验室孵育实验。 AGNP的短期效果一般有限。然而,在暴露于0.01mg AgNP / kg的一年后,对土壤微生物量有显着的负面影响(通过可提取的DNA量化; P = 0.000)和细菌氨氧化剂(通过AmoA基因拷贝数定量; P = 0.009)。此外,测试的AgNP浓度显着降低了土壤微生物生物量,亮氨酸氨基肽酶活性(通过基材周转量定量; P = 0.014),以及氮素固定微生物的丰富(通过NiFH基因拷贝数量化; P = 0.001)。由于Ag +离子释放,AgNO3的阳性对照结果显示出主要的效果。因此,在测试期间AgNP的毒性增加可能反映了Ag +离子的长期释放。然而,即使是非常低浓度的AGNP且导致微生物土壤群落的缺点,特别是对于氮循环,我们的结果证实了将AGNP释放到环境中的风险。 (c)2018中国科学院生态环境科学研究中心。 elsevier b.v出版。

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