Literature DB >> 21564459

Stable-isotope probing of the polycyclic aromatic hydrocarbon-degrading bacterial guild in a contaminated soil.

Maiysha D Jones1, Douglas W Crandell, David R Singleton, Michael D Aitken.   

Abstract

The bacteria responsible for the degradation of naphthalene, phenanthrene, pyrene, fluoranthene or benz[a]anthracene in a polycyclic aromatic hydrocarbon (PAH)-contaminated soil were investigated by DNA-based stable-isotope probing (SIP). Clone libraries of 16S rRNA genes were generated from the (13) C-enriched ('heavy') DNA recovered from each SIP experiment, and quantitative PCR primers targeting the 16S rRNA gene were developed to measure the abundances of many of the SIP-identified sequences. Clone libraries from the SIP experiments with naphthalene, phenanthrene and fluoranthene primarily contained sequences related to bacteria previously associated with the degradation of those compounds. However, Pigmentiphaga-related sequences were newly associated with naphthalene and phenanthrene degradation, and sequences from a group of uncultivated γ-Proteobacteria known as Pyrene Group 2 were newly associated with fluoranthene and benz[a]anthracene degradation. Pyrene Group 2-related sequences were the only sequences recovered from the clone library generated from SIP with pyrene, and they were 82% of the sequences recovered from the clone library generated from SIP with benz[a]anthracene. In time-course experiments with each substrate in unlabelled form, the abundance of each of the measured groups increased in response to the corresponding substrate. These results provide a comprehensive description of the microbial ecology of a PAH-contaminated soil as it relates to the biodegradation of PAHs from two to four rings, and they underscore that bacteria in Pyrene Group 2 are well-suited for the degradation of four-ring PAHs.
© 2011 Society for Applied Microbiology and Blackwell Publishing Ltd.

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Year:  2011        PMID: 21564459      PMCID: PMC4755288          DOI: 10.1111/j.1462-2920.2011.02501.x

Source DB:  PubMed          Journal:  Environ Microbiol        ISSN: 1462-2912            Impact factor:   5.491


  49 in total

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Journal:  Appl Environ Microbiol       Date:  1982-02       Impact factor: 4.792

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Authors:  D Dean-Ross; C E Cerniglia
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Authors:  B Boldrin; A Tiehm; C Fritzsche
Journal:  Appl Environ Microbiol       Date:  1993-06       Impact factor: 4.792

5.  Conversion of polycyclic aromatic hydrocarbons by Sphingomonas sp. VKM B-2434.

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Authors:  David R Singleton; Liza Guzmán Ramirez; Michael D Aitken
Journal:  Appl Environ Microbiol       Date:  2009-03-06       Impact factor: 4.792

7.  Effect of incubation conditions on the enrichment of pyrene-degrading bacteria identified by stable-isotope probing in an aged, PAH-contaminated soil.

Authors:  Maiysha D Jones; David R Singleton; Darryl P Carstensen; Sabrina N Powell; Julie S Swanson; Frederic K Pfaender; Michael D Aitken
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2.  Long-term simulation of in situ biostimulation of polycyclic aromatic hydrocarbon-contaminated soil.

Authors:  Stephen D Richardson; Maiysha D Jones; David R Singleton; Michael D Aitken
Journal:  Biodegradation       Date:  2012-02-05       Impact factor: 3.909

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5.  Pyrosequence analyses of bacterial communities during simulated in situ bioremediation of polycyclic aromatic hydrocarbon-contaminated soil.

Authors:  David R Singleton; Maiysha D Jones; Stephen D Richardson; Michael D Aitken
Journal:  Appl Microbiol Biotechnol       Date:  2012-11-07       Impact factor: 4.813

6.  Description of Immundisolibacter cernigliae gen. nov., sp. nov., a high-molecular-weight polycyclic aromatic hydrocarbon-degrading bacterium within the class Gammaproteobacteria, and proposal of Immundisolibacterales ord. nov. and Immundisolibacteraceae fam. nov.

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7.  Characterization of novel polycyclic aromatic hydrocarbon dioxygenases from the bacterial metagenomic DNA of a contaminated soil.

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8.  Identification of anthraquinone-degrading bacteria in soil contaminated with polycyclic aromatic hydrocarbons.

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9.  Surfactant-induced bacterial community changes correlated with increased polycyclic aromatic hydrocarbon degradation in contaminated soil.

Authors:  David R Singleton; Alden C Adrion; Michael D Aitken
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10.  Use of Substrate-Induced Gene Expression in Metagenomic Analysis of an Aromatic Hydrocarbon-Contaminated Soil.

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Journal:  Appl Environ Microbiol       Date:  2015-11-20       Impact factor: 4.792

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