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首页> 外文期刊>Environmental Science & Technology >Impacts of Pristine and Transformed Ag and Cu Engineered Nanomaterials on Surficial Sediment Microbial Communities Appear Short-Lived
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Impacts of Pristine and Transformed Ag and Cu Engineered Nanomaterials on Surficial Sediment Microbial Communities Appear Short-Lived

机译:原始和转化的Ag和Cu工程纳米材料对表层沉积物微生物群落的影响似乎是短暂的。

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摘要

Laboratory-based studies have shown that many soluble metal and metal oxide engineered nanomaterials (ENM) exert strong toxic effects on microorganisms. However, laboratory-based studies lack the complexity of natural systems and often use "as manufactured" ENMs rather than more environmentally relevant transformed ENMs, leaving open the question of whether natural ligands and seasonal variation will mitigate ENM impacts. Because ENMs will accumulate in subaquatic sediments, we examined the effects of pristine and transformed Ag and Cu ENMs on surficial sediment microbial communities in simulated freshwater wetlands. Five identical mesocosms were dosed through the water column with either Ag~0, Ag_2S, CuO or CuS ENMs (nominal sizes of 4.67 ± 1.4, 18.1 ± 3.2, 31.1 ± 12, and 12.4 ± 4.1, respectively) or Cu~(2+). Microbial communities were examined at 0, 7, 30, 90, 180, and 300 d using qPCR and high-throughput 16S rRNA gene sequencing. Results suggest differential short-term impacts of Ag~0 and Ag_2S, similarities between CuO and CuS, and differences between Cu ENMs and Cu2*. PICRUSt-predicted metagenomes displayed differential effects of Ag treatments on photosynthesis and of Cu treatments on methane metabolism. By 300 d, all metrics pointed to reconvergence of ENM-dosed mesocosm microbial community structure and composition, suggesting that the long-term microbial community impacts from a pulse of Ag or Cu ENMs are limited.
机译:基于实验室的研究表明,许多可溶性金属和金属氧化物工程纳米材料(ENM)对微生物具有强烈的毒性作用。但是,基于实验室的研究缺乏自然系统的复杂性,并且经常使用“制造时的” ENM,而不是更环境相关的转化ENM,这留下了天然配体和季节性变化是否会减轻ENM影响的问题。由于ENM会积聚在水底沉积物中,因此我们研究了原始的和转化的Ag和Cu ENMs对模拟淡水湿地表层沉积物微生物群落的影响。通过水柱给五个相同的中观膜添加Ag〜0,Ag_2S,CuO或CuS ENM(标称尺寸分别为4.67±1.4、18.1±3.2、31.1±12和12.4±4.1)或Cu〜(2+ )。使用qPCR和高通量16S rRNA基因测序在0、7、30、90、180和300 d检查微生物群落。结果表明,Ag〜0和Ag_2S的短期影响不同,CuO和CuS之间的相似性以及Cu ENMs和Cu2 *之间的区别。 PICRUSt预测的基因组显示了Ag处理对光合作用的影响和Cu处理对甲烷代谢的不同影响。到300 d时,所有指标都表明ENM给药的中观微生物群落结构和组成的重新融合,这表明长期的微生物群落对脉冲的Ag或Cu ENM的影响是有限的。

著录项

  • 来源
    《Environmental Science & Technology》 |2016年第5期|2641-2651|共11页
  • 作者单位

    Civil and Environmental Engineering, Carnegie Mellon University, Pittsburgh, Pennsylvania 15213, United States,Center for the Environmental Implications of NanoTechnology (CEINT), Durham, North Carolina 27708, United States;

    Civil and Environmental Engineering, Carnegie Mellon University, Pittsburgh, Pennsylvania 15213, United States,Center for the Environmental Implications of NanoTechnology (CEINT), Durham, North Carolina 27708, United States;

    Civil and Environmental Engineering, University of Pittsburgh, Pittsburgh, Pennsylvania 15260, United States,Computational and Systems Biology, University of Pittsburgh, Pittsburgh, Pennsylvania 15260, United States;

    Center for the Environmental Implications of NanoTechnology (CEINT), Durham, North Carolina 27708, United States;

    Civil and Environmental Engineering, Carnegie Mellon University, Pittsburgh, Pennsylvania 15213, United States,Center for the Environmental Implications of NanoTechnology (CEINT), Durham, North Carolina 27708, United States;

    Civil and Environmental Engineering, Carnegie Mellon University, Pittsburgh, Pennsylvania 15213, United States,Center for the Environmental Implications of NanoTechnology (CEINT), Durham, North Carolina 27708, United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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