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Focused Microbiome Shifts in Reconstructed Wetlands Correlated with Elevated Copper Concentrations Originating from Micronized Copper Azole-Treated Wood

机译:重建的湿地的聚焦微生物叶片与源自微粉化铜唑处理木材的升高的铜浓度相关

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摘要

Micronized copper (Cu) azole (MCA) wood preservative formulations include Cu in nano form, and relatively little is known about longer term effects of Cu leached from MCA into wetland ecosystems. We tested the hypothesis that changes in soil microbiomes within reconstructed freshwater wetlands will be associated with exposure to elevated Cu concentrations originating from immersed MCA-treated wood stakes. Eight replicate communities were assembled with Willamette Valley (OR, USA) flood plain soil and clonally propagated wetland plants within mesocosms. Inundated communities were equilibrated for 5 months before installation of MCA or control southern yellow pine stakes (n = 4 communities/experimental group). Soil samples were collected for 16S and internal transcribed spacer amplicon sequencing to quantify responses in prokaryotes and eukaryotes, respectively, at 15 time points, spanning two simulated seasonal dry downs, for up to 678 days. Physiochemical properties of water and soil were monitored at 20 and 12 time points respectively, over the same period. For both taxonomic groups of organisms, phylogenetic diversity increased and was positively correlated with elapsed days. Furthermore, there was significant divergence among eukaryotes during the second year based on experimental group. Although the composition of taxa underwent succession over time, there was significantly reduced relative abundance of sequence variants from Gomphonema diatoms and Scutellinia fungi in communities where MCA wood stakes were present compared with the controls. These focused microbiome shifts were positively correlated with surface water Cu and soil Cu concentrations, which were significantly elevated in treated communities. The reconstructed communities were effective systems for assessing potential impacts to wetland microbiomes after exposure to released copper. The results further inform postcommercialization risk assessments on MCA-treated wood. Environ Toxicol Chem 2021;00:1-18. Published 2021. This article is a U.S. Government work and is in the public domain in the USA.
机译:微粉化铜(Cu)唑(MCA)木材防腐剂制剂包括纳米形式的Cu,并且已知关于Cu从MCA浸出到湿地生态系统中的长期影响。我们测试了重建淡水湿地中土壤微生物的变化的假设将与源自浸没的MCA处理的木材赌注的升高的Cu浓度有关。八个复制社区被威拉米特谷(或美国)洪水平原土壤和克隆繁殖的湿地植物组装在Mesocosms内。在安装MCA或控制南部黄松桩之前5个月(N = 4个社区/实验组),淹没的社区平均平衡。收集土壤样品以进行16S和内转录的间隔扩增子测序,以分别在15个时间点中定量原核生物和真核生物中的反应,跨越两个模拟季节性干燥,长达678天。在同一时期分别在20和12个时间点监测水和土壤的生理化学性质。对于两种分类群的生物体,系统发育多样性增加并与经过的日子呈正相关。此外,在基于实验组的第二年在真核生物中存在显着分歧。虽然随着时间的推移,分类群的组成后续,但在与对照组相比,在存在MCA木材赌注的社区中,从甘氨酸硅藻和Scutellinia真菌的相对丰富的相对丰富的序列变体。这些聚焦的微生物组偏移与表面水Cu和土壤Cu浓度正相关,治疗群落显着升高。重建的社区是在暴露于释放铜后对湿地微生物的潜在影响的有效系统。结果进一步通知了MCA处理木材的后期经济化风险评估。环境毒素化学2021; 00:1-18。发布2021年。本文是美国政府工作,并在美国的公共领域。

著录项

  • 来源
    《Environmental toxicology and chemistry》 |2021年第12期|3351-3368|共18页
  • 作者单位

    US EPA Pacific Ecol Syst Div Ctr Publ Hlth & Environm Assessment Off Res & Dev Corvallis OR 97333 USA;

    US EPA Pacific Ecol Syst Div Ctr Publ Hlth & Environm Assessment Off Res & Dev Corvallis OR 97333 USA;

    US EPA Pacific Ecol Syst Div Ctr Publ Hlth & Environm Assessment Off Res & Dev Corvallis OR 97333 USA;

    US EPA Pacific Ecol Syst Div Ctr Publ Hlth & Environm Assessment Off Res & Dev Corvallis OR 97333 USA;

    US EPA Pacific Ecol Syst Div Ctr Publ Hlth & Environm Assessment Off Res & Dev Corvallis OR 97333 USA;

    Consolidated Safety Serv Corvallis OR USA;

    Consolidated Safety Serv Corvallis OR USA;

    US EPA Pacific Ecol Syst Div Ctr Publ Hlth & Environm Assessment Off Res & Dev Corvallis OR 97333 USA;

  • 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
  • 中图分类
  • 关键词

    Copper; Wetlands; Nanomaterials; Micronized copper azole; Microbial communities;

    机译:铜;湿地;纳米材料;微生物化铜唑;微生物社区;

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