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Relationships between the Abundance and Expression of Functional Genes from Vinyl Chloride (VC)-Degrading Bacteria and eochemical Parameters at VC-Contaminated Sites

机译:氯乙烯(VC)降解细菌功能基因的丰度和表达与VC污染位点的地球化学参数之间的关系

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摘要

Bioremediation of vinyl chloride (VC) contamination in groundwater could be mediated by three major bacterial guilds: anaerobic VC-dechlorinators, methanotrophs, and ethene-oxidizing bacteria (etheneotrophs) via metabolic or cometabolic pathways. We collected 95 groundwater samples across 6 chlorinated ethene-contaminated sites and searched for relationships among VC biodegradation gene abundance and expression and site geochemical parameters (e.g., VC concentrations). Functional genes from the three major VC-degrading bacterial guilds were present in 99% and expressed in 59% of the samples. Etheneotroph and methanotroph functional gene abundances ranged from 10~2 to 10~9 genes per liter of groundwater among the samples with VC reductive dehalogenase gene (bvcA and vcrA) abundances reaching 10~8 genes per liter of groundwater. Etheneotroph functional genes (etnC and etnE) and VC reductive dehalogenase genes (bvcA and vcrA) were strongly related to VC concentrations (p < 0.001). Methanotroph functional genes (mmoX and pmoA) were not related to VC concentration (p > 0.05). Samples from sites with bulk VC attenuation rates >0.08 year~(-1) contained higher levels of etheneotroph and anaerobic VC-dechlorinator functional genes and transcripts than those with bulk VC attenuation rates <0.004 year~(-1). We conclude that both etheneotrophs and anaerobic VC-dechlorinators have the potential to simultaneously contribute to VC biodegradation at these sites.
机译:地下水中的氯乙烯(VC)污染的生物修复可以通过三个主要的细菌协会来介导:厌氧的VC-脱氯剂,甲烷营养菌和乙烯氧化菌(乙烯营养菌)通过代谢或新陈代谢途径进行。我们在6个被氯化乙烯污染的地点收集了95个地下水样本,并搜索了VC生物降解基因丰度与表达和地点地球化学参数(例如VC浓度)之间的关系。来自三个主要的降解VC的细菌协会的功能基因以99%的比例存在,并在59%的样品中表达。 VC还原脱卤酶基因(bvcA和vcrA)丰度达到每升地下水10〜8个基因的样本中,咖啡和甲烷营养功能基因的丰度范围为每升地下水10〜2至10〜9个基因。嗜咖啡菌功能基因(etnC和etnE)和VC还原性脱卤素酶基因(bvcA和vcrA)与VC浓度密切相关(p <0.001)。甲烷营养生物功能基因(mmoX和pmoA)与VC浓度无关(p> 0.05)。 VC整体衰减率> 0.08年(-1)的地点的样本中,乙烯营养和厌氧VC-脱氯器功能基因和转录本的水平高于VC衰减整体率<0.004年(-1)的地方。我们得出的结论是,乙烯营养菌和厌氧VC-脱氯剂都有潜力同时促进这些部位的VC生物降解。

著录项

  • 来源
    《Environmental Science & Technology》 |2017年第21期|12164-12174|共11页
  • 作者单位

    Department of Civil and Environmental Engineering, 4105 Seamans Center and N322 College of Public Health Building, The University of Iowa, Iowa City, Iowa 52242, United States;

    Department of Civil and Environmental Engineering, 4105 Seamans Center and N322 College of Public Health Building, The University of Iowa, Iowa City, Iowa 52242, United States;

    NAVFAC Southeast, EV3 Environmental Restoration Building 135, Naval Air Station Jacksonville, Florida 32508, United States;

    Department of Biostatistics, N322 College of Public Health Building, The University of Iowa, Iowa City, Iowa 52242, United States;

    Department of Civil and Environmental Engineering, 4105 Seamans Center and N322 College of Public Health Building, The University of Iowa, Iowa City, Iowa 52242, 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
  • 中图分类
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  • 入库时间 2022-08-17 13:58:01

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