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Characterization of Groundwater Microbial Communities, Dechlorinating Bacteria, and In Situ Biodegradation of Chloroethenes Along a Vertical Gradient

机译:沿垂直梯度对地下水微生物群落,脱氯细菌和氯乙烯进行原位生物降解的表征

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摘要

The variability of hydrogeochemical conditions can affect groundwater microbial communities and the natural attenuation of organic chemicals in contaminated aquifers. It is suspected that in situ biodegradation in anoxic plumes of chloroethenes depends on the spatial location of the contaminants and the electron donors and acceptors, as well as the patchiness of bacterial populations capable of reductive dechlorina-tion. However, knowledge about the spatial variability of bacterial communities and in situ biodegradation of chloroethenes in aquifers is limited. Here, we show that changes of the bacterial communities, the distribution of putative dechlorinating bacteria and in situ biodegradation at the border of a chloroethenes plume (Bitterfeld, Germany) are related to local hydrogeochemical conditions. Biotic reductive dechlorination occurred along a 50 m vertical gradient, although significant changes of the hydrogeochemistry and contaminant concentrations, bacterial communities and distribution of putative dechlorinating bacteria (Dehalobacter spp., Desulfito-bacterium spp., Dehalococcoides spp., and Geobacter spp.) were observed. The occurrence and variability of in situ biodegradation of chloroethenes were revealed by shifts in the isotope compositions of the chloroethenes along the vertical gradient (δ~(13)C ranging from -14.4‰ to -4.4‰). Our results indicate that habitat characteristics were compartmentalized along the vertical gradient and in situ biodegradation occurred with specific reaction conditions at discrete depth. The polyphasic approach that combined geochemical and biomolecular methods with compound-specific analysis enabled to characterize the spatial variability of hydrochemistry, bacterial communities and in situ biodegradation of chloroethenes in a heterogeneous aquifer.
机译:水文地球化学条件的变化会影响地下水微生物群落以及受污染含水层中有机化学物质的自然衰减。怀疑氯乙烯的缺氧羽流中的原位生物降解取决于污染物和电子供体和受体的空间位置,以及能够还原脱氯的细菌种群的斑块。但是,关于细菌群落空间变异性和含水层中氯乙烯的原位生物降解的知识是有限的。在这里,我们显示出细菌群落的变化,假定的脱氯细菌的分布以及氯乙烯羽流边界(Bitterfeld,德国)的原位生物降解与当地水文地球化学条件有关。虽然水文地球化学和污染物浓度,细菌群落和假定的脱氯细菌(脱盐杆菌属,脱硫细菌属,脱卤球菌属和土杆菌属)发生了显着变化,但生物还原性脱氯沿垂直方向的50 m发生。观测到的。氯乙烯同位素组成沿垂直梯度(δ〜(13)C -14.4‰至-4.4‰)的变化揭示了氯乙烯原位生物降解的发生和变化。我们的结果表明,生境特征沿垂直梯度是分隔的,并且在特定的反应条件下,在离散深度发生了原位生物降解。将地球化学和生物分子方法与化合物特异性分析相结合的多相方法能够表征非均质含水层中水化学,细菌群落和氯乙烯的原位生物降解的空间变异性。

著录项

  • 来源
    《Water, Air, and Soil Pollution》 |2011年第4期|p.107-122|共16页
  • 作者单位

    Department of Isotope Biogeochemistry, Helmholtz Centre for Environmental Research-UFZ, Leipzig 04318 Germany,Laboratory of Hydrology and Geochemistry of Strasbourg (LHyGeS), University of Strasbourg/ENGEES, CNRS, 1, rue Blessig, 67 084 Strasbourg, France;

    Department of Isotope Biogeochemistry, Helmholtz Centre for Environmental Research-UFZ, Leipzig 04318 Germany;

    Laboratory for Environmental Biotechnology, EPFL-ENAC-IIE-LBE, Lausanne 1015, Switzerland;

    Central Environmental Laboratory, EPFL-ENAC-IIE-CEL, Lausanne 1015, Switzerland;

    Department of Bioremediation, Helmholtz Centre for Environmental Research-UFZ, Leipzig 04318 Germany;

    Department of Isotope Biogeochemistry, Helmholtz Centre for Environmental Research-UFZ, Leipzig 04318 Germany;

    Department of Groundwater Remediation, Helmholtz Centre for Environmental Research-UFZ, Leipzig 04318 Germany;

    Department of Groundwater Remediation, Helmholtz Centre for Environmental Research-UFZ, Leipzig 04318 Germany;

    Department of Isotope Biogeochemistry, Helmholtz Centre for Environmental Research-UFZ, Leipzig 04318 Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    compound-specific isotope analysis; chloroethenes; ordination methods; dehalococcoides; aquifer heterogeneity;

    机译:化合物特异性同位素分析;氯乙烯协调方法;脱卤球菌;含水层非均质性;

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