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PMID: 7764922 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, Non-P.H.S. Research Support, U.S. Gov't, P.H.S.

Metabolic diversity of aromatic hydrocarbon-degrading bacteria from a petroleum-contaminated aquifer.

Biodegradation ·Vol. 4 ·No. 4 ·1993-00-00 ·Pages 249-59

Mikesell MD, Kukor JJ, Olsen RH

Abstract

We characterized bacteria from contaminated aquifers for their ability to utilize aromatic hydrocarbons under hypoxic (oxygen-limiting) conditions (initial dissolved oxygen concentration about 2 mg/l) with nitrate as an alternate electron acceptor. This is relevant to current intense efforts to establish favorable conditions for in situ bioremediation. Using samples of granular activated carbon slurries from an operating groundwater treatment system, we isolated bacteria that are able to use benzene, toluene, ethylbenzene, or p-xylene as their sole source of carbon under aerobic or hypoxic-denitrifying conditions. Direct isolation on solid medium incubated aerobically or hypoxically with the substrate supplied as vapor yielded 10(3) to 10(5) bacteria ml-1 of slurry supernatant, with numbers varying little with respect to isolation substrate or conditions. More than sixty bacterial isolates that varied in colony morphology were purified and characterized according to substrate utilization profiles and growth condition (i.e., aerobic vs. hypoxic) specificity. Strains with distinct characteristics were obtained using benzene compared with those isolated on toluene or ethylbenzene. In general, isolates obtained from direct selection on benzene minimal medium grew well under aerobic conditions but poorly under hypoxic conditions, whereas many ethylbenzene isolates grew well under both incubation conditions. We conclude that the conditions of isolation, rather than the substrate used, will influence the apparent characteristic substrate utilization range of the isolates obtained. Also, using an enrichment culture technique, we isolated a strain of Pseudomonas fluorescens, designated CFS215, which exhibited nitrate dependent degradation of aromatic hydrocarbons under hypoxic conditions.

MeSH Terms
Bacteria/metabolism Bacteria, Aerobic/metabolism Benzene/metabolism Benzene Derivatives/metabolism Biodegradation, Environmental Environmental Pollutants/metabolism Fresh Water Hydrocarbons/metabolism Oxygen/metabolism Petroleum Pseudomonas fluorescens/metabolism Toluene/metabolism Xylenes/metabolism
Chemicals
Benzene Derivatives Environmental Pollutants Hydrocarbons Petroleum Xylenes Toluene 4-xylene Benzene ethylbenzene Oxygen
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Mikesell M D
Department of Microbiology & Immunology, University of Michigan Medical School, Ann Arbor 48109-0620.
Kukor J J
Olsen R H
References (18)
18 references, click to expand
  1. Isolation and characterization of a bacterium that mineralizes toluene in the absence of molecular oxygen.
    Arch Microbiol. 1990;154(4):336-41 PMID: 2244785
  2. Complete mineralization of benzene by aquifer microorganisms under strictly anaerobic conditions.
    Appl Environ Microbiol. 1992 Aug;58(8):2663-6 PMID: 1514813
  3. Biodegradation of monoaromatic hydrocarbons by aquifer microorganisms using oxygen, nitrate, or nitrous oxide as the terminal electron acceptor.
    Appl Environ Microbiol. 1991 Aug;57(8):2403-7 PMID: 1768110
  4. Identification and catabolic activity of well-derived gasoline-degrading bacteria from a contaminated aquifer.
    Appl Environ Microbiol. 1990 Nov;56(11):3565-75 PMID: 2268163
  5. Substrate interactions of benzene, toluene, and para-xylene during microbial degradation by pure cultures and mixed culture aquifer slurries.
    Appl Environ Microbiol. 1991 Oct;57(10):2981-5 PMID: 1746958
  6. Anaerobic degradation of toluene by a denitrifying bacterium.
    Appl Environ Microbiol. 1991 Apr;57(4):1139-45 PMID: 2059037
  7. Transformation of toluene and benzene by mixed methanogenic cultures.
    Appl Environ Microbiol. 1987 Feb;53(2):254-60 PMID: 3105454
  8. Anaerobic degradation of aromatic compounds.
    Annu Rev Microbiol. 1988;42:289-317 PMID: 3059996
  9. Formation of (+)-cis-2,3-dihydroxy-1-methylcyclohexa-4,6-diene from toluene by Pseudomonas putida.
    Biochemistry. 1970 Mar 31;9(7):1626-30 PMID: 4314232
  10. Removal of trace chlorinated organic compounds by activated carbon and fixed-film bacteria.
    Environ Sci Technol. 1982 Dec 1;16(12):836-43 PMID: 22236258
  11. Toluene-4-monooxygenase, a three-component enzyme system that catalyzes the oxidation of toluene to p-cresol in Pseudomonas mendocina KR1.
    J Bacteriol. 1991 May;173(9):3010-6 PMID: 2019563
  12. Novel pathway of toluene catabolism in the trichloroethylene-degrading bacterium g4.
    Appl Environ Microbiol. 1989 Jun;55(6):1624-9 PMID: 16347956
  13. Metabolites formed during anaerobic transformation of toluene and o-xylene and their proposed relationship to the initial steps of toluene mineralization.
    Appl Environ Microbiol. 1992 Feb;58(2):496-501 PMID: 1610173
  14. Rapid microbial mineralization of toluene and 1,3-dimethylbenzene in the absence of molecular oxygen.
    Appl Environ Microbiol. 1986 Oct;52(4):944-7 PMID: 16347188
  15. Anaerobic Oxidation of Toluene, Phenol, and p-Cresol by the Dissimilatory Iron-Reducing Organism, GS-15.
    Appl Environ Microbiol. 1990 Jun;56(6):1858-64 PMID: 16348226
  16. Metabolism of toluene and xylenes by Pseudomonas (putida (arvilla) mt-2: evidence for a new function of the TOL plasmid.
    J Bacteriol. 1975 Oct;124(1):7-13 PMID: 1176436
  17. Anaerobic degradation of toluene in denitrifying Pseudomonas sp.: indication for toluene methylhydroxylation and benzoyl-CoA as central aromatic intermediate.
    Arch Microbiol. 1991;156(2):152-8 PMID: 1781729
  18. Anaerobic degradation of toluene and xylene by aquifer microorganisms under sulfate-reducing conditions.
    Appl Environ Microbiol. 1992 Mar;58(3):794-800 PMID: 1575482
Article Info
Journal
Biodegradation
Abbr.
Biodegradation
ISSN
0923-9820
Published
1993-00-00
Pages
249-59
Language
English
Region
Netherlands
NLM ID
9100834
Grants
NIEHS NIH HHS · ES-04911 · United States
Analysis Services
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