Betaproteobacteria dominance and diversity shifts in the bacterial community of a PAH-contaminated soil exposed to phenanthrene
Creators
- 1. UJF-Grenoble 1/CNRS, UMR 5249, F-38041, Grenoble (France)
- 2. CEA, DSV, iRTSV, Laboratoire de Chimie et Biologie des Métaux, F-38054 Grenoble (France)
- 3. UEVE, Université d'Evry, F-91057 Evry (France)
- 4. CNRS-UMR 8030, F-91057 Evry (France)
- 5. CEA, DSV, Institut de Génomique, Genoscope, 2 rue Gaston Crémieux, F-91057 Evry (France)
- 6. INRA, Université de Bourgogne, UMR 1229 Microbiologie du Sol et de l'Environnement, BP 86510, 21065 Dijon Cedex (France)
- 7. UJF-Grenoble 1/CNRS, UMR 5553 Laboratoire d'Ecologie Alpine, F-38041 Grenoble (France)
- 8. LOCIE, Université de Savoie, F-73376 Le Bourget-du-Lac (France)
Description
In this study, the PAH-degrading bacteria of a constructed wetland collecting road runoff has been studied through DNA stable isotope probing. Microcosms were spiked with 13C-phenanthrene at 34 or 337 ppm, and bacterial diversity was monitored over a 14-day period. At 337 ppm, PAH degraders became dominated after 5 days by Betaproteobacteria, including novel Acidovorax, Rhodoferax and Hydrogenophaga members, and unknown bacteria related to Rhodocyclaceae. The prevalence of Betaproteobacteria was further demonstrated by phylum-specific quantitative PCR, and was correlated with a burst of phenanthrene mineralization. Striking shifts in the population of degraders were observed after most of the phenanthrene had been removed. Soil exposed to 34 ppm phenanthrene showed a similar population of degraders, albeit only after 14 days. Results demonstrate that specific Betaproteobacteria are involved in the main response to soil PAH contamination, and illustrate the potential of SIP approaches to investigate PAH biodegradation in soil. - Highlights: ► We explored PAH-degrading bacteria on a chronically polluted site by stable isotope probing. ► Betaproteobacteria appeared as the main phenanthrene degraders in soil. ► Most soil PAH degraders were poorly related to bacteria isolated so far. ► Diversity shifts occurred in the community of degraders when the PAH became less available. - On a site collecting road runoff, implementation of stable isotope probing to identify soil bacteria responsible for phenanthrene degradation, led to the discovery of new Betaproteobacteria distantly related to known PAH degraders.
Availability note (English)
Available from http://dx.doi.org/10.1016/j.envpol.2011.11.032Additional details
Identifiers
- DOI
- 10.1016/j.envpol.2011.11.032;
- PII
- S0269-7491(11)00649-X;
Publishing Information
- Journal Title
- Environmental Pollution (1987)
- Journal Volume
- 162
- Journal Page Range
- p. 345-353
- ISSN
- 0269-7491
- CODEN
- ENPOEK
INIS
- Country of Publication
- United Kingdom
- Country of Input or Organization
- International Atomic Energy Agency (IAEA)
- INIS RN
- 43117713
- Subject category
- S54: ENVIRONMENTAL SCIENCES;
- Descriptors DEI
- BACTERIA; BIODEGRADATION; CARBON 13; DNA; LAND POLLUTION; MICROCOSMS; MINERALIZATION; PHENANTHRENE; POLYCYCLIC AROMATIC HYDROCARBONS; POLYMERASE CHAIN REACTION; RUNOFF; SOILS; WETLANDS
- Descriptors DEC
- AQUATIC ECOSYSTEMS; AROMATICS; CARBON ISOTOPES; CHEMICAL REACTIONS; CONDENSED AROMATICS; DECOMPOSITION; ECOSYSTEMS; ENVIRONMENTAL TRANSPORT; EVEN-ODD NUCLEI; GENE AMPLIFICATION; HYDROCARBONS; ISOTOPES; LIGHT NUCLEI; MASS TRANSFER; MICROORGANISMS; NUCLEI; NUCLEIC ACIDS; ORGANIC COMPOUNDS; POLLUTION; STABLE ISOTOPES
Optional Information
- Copyright
- Copyright (c) 2011 Elsevier Science B.V., Amsterdam, The Netherlands, All rights reserved.