Literature DB >> 22179233

Denitrifying bacteria from the genus Rhodanobacter dominate bacterial communities in the highly contaminated subsurface of a nuclear legacy waste site.

Stefan J Green1, Om Prakash, Puja Jasrotia, Will A Overholt, Erick Cardenas, Daniela Hubbard, James M Tiedje, David B Watson, Christopher W Schadt, Scott C Brooks, Joel E Kostka.   

Abstract

The effect of long-term mixed-waste contamination, particularly uranium and nitrate, on the microbial community in the terrestrial subsurface was investigated at the field scale at the Oak Ridge Integrated Field Research Challenge (ORIFRC) site in Oak Ridge, TN. The abundance, community composition, and distribution of groundwater microorganisms were examined across the site during two seasonal sampling events. At representative locations, subsurface sediment was also examined from two boreholes, one sampled from the most heavily contaminated area of the site and another from an area with low contamination. A suite of DNA- and RNA-based molecular tools were employed for community characterization, including quantitative PCR of rRNA and nitrite reductase genes, community composition fingerprinting analysis, and high-throughput pyrotag sequencing of rRNA genes. The results demonstrate that pH is a major driver of the subsurface microbial community structure and that denitrifying bacteria from the genus Rhodanobacter (class Gammaproteobacteria) dominate at low pH. The relative abundance of bacteria from this genus was positively correlated with lower-pH conditions, and these bacteria were abundant and active in the most highly contaminated areas. Other factors, such as the concentration of nitrogen species, oxygen level, and sampling season, did not appear to strongly influence the distribution of Rhodanobacter bacteria. The results indicate that these organisms are acid-tolerant denitrifiers, well suited to the acidic, nitrate-rich subsurface conditions, and pH is confirmed as a dominant driver of bacterial community structure in this contaminated subsurface environment.

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Year:  2011        PMID: 22179233      PMCID: PMC3273022          DOI: 10.1128/AEM.06435-11

Source DB:  PubMed          Journal:  Appl Environ Microbiol        ISSN: 0099-2240            Impact factor:   4.792


  42 in total

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2.  Determination of bacterial load by real-time PCR using a broad-range (universal) probe and primers set.

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3.  Rhodanobacter denitrificans sp. nov., isolated from nitrate-rich zones of a contaminated aquifer.

Authors:  Om Prakash; Stefan J Green; Puja Jasrotia; Will A Overholt; Andy Canion; David B Watson; Scott C Brooks; Joel E Kostka
Journal:  Int J Syst Evol Microbiol       Date:  2011-11-25       Impact factor: 2.747

4.  ARB: a software environment for sequence data.

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Journal:  Nucleic Acids Res       Date:  2004-02-25       Impact factor: 16.971

Review 5.  Gapped BLAST and PSI-BLAST: a new generation of protein database search programs.

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6.  Nanogram nitrite and nitrate determination in environmental and biological materials by vanadium (III) reduction with chemiluminescence detection.

Authors:  R S Braman; S A Hendrix
Journal:  Anal Chem       Date:  1989-12-15       Impact factor: 6.986

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Authors:  Wan-Taek Im; Sung Taik Lee; Akira Yokota
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9.  In situ bioreduction of technetium and uranium in a nitrate-contaminated aquifer.

Authors:  J D Istok; J M Senko; L R Krumholz; D Watson; M A Bogle; A Peacock; Y J Chang; D C White
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  46 in total

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Authors:  Katharina Palmer; Marcus A Horn
Journal:  Appl Environ Microbiol       Date:  2012-06-01       Impact factor: 4.792

2.  Watershed-scale fungal community characterization along a pH gradient in a subsurface environment cocontaminated with uranium and nitrate.

Authors:  Puja Jasrotia; Stefan J Green; Andy Canion; Will A Overholt; Om Prakash; Denis Wafula; Daniela Hubbard; David B Watson; Christopher W Schadt; Scott C Brooks; Joel E Kostka
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3.  Bacterial community structure in treated sewage sludge with mesophilic and thermophilic anaerobic digestion.

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4.  Phenotypic and genotypic richness of denitrifiers revealed by a novel isolation strategy.

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5.  High-throughput amplicon sequencing reveals distinct communities within a corroding concrete sewer system.

Authors:  Barry I Cayford; Paul G Dennis; Jurg Keller; Gene W Tyson; Philip L Bond
Journal:  Appl Environ Microbiol       Date:  2012-07-27       Impact factor: 4.792

6.  Genome sequences for six Rhodanobacter strains, isolated from soils and the terrestrial subsurface, with variable denitrification capabilities.

Authors:  Joel E Kostka; Stefan J Green; Lavanya Rishishwar; Om Prakash; Lee S Katz; Leonardo Mariño-Ramírez; I King Jordan; Christine Munk; Natalia Ivanova; Natalia Mikhailova; David B Watson; Steven D Brown; Anthony V Palumbo; Scott C Brooks
Journal:  J Bacteriol       Date:  2012-08       Impact factor: 3.490

Review 7.  Technicalities and Glitches of Terminal Restriction Fragment Length Polymorphism (T-RFLP).

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8.  Distinct diversity of the czcA gene in two sedimentary horizons from a contaminated estuarine core.

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Review 9.  Metagenomic applications in environmental monitoring and bioremediation.

Authors:  Stephen M Techtmann; Terry C Hazen
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10.  Experimental evolution reveals nitrate tolerance mechanisms in Desulfovibrio vulgaris.

Authors:  Bo Wu; Feifei Liu; Aifen Zhou; Juan Li; Longfei Shu; Megan L Kempher; Xueqin Yang; Daliang Ning; Feiyan Pan; Grant M Zane; Judy D Wall; Joy D Van Nostrand; Philippe Juneau; Shouwen Chen; Qingyun Yan; Jizhong Zhou; Zhili He
Journal:  ISME J       Date:  2020-09-15       Impact factor: 10.302

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