Importance of Gram-positive naphthalene-degrading bacteria in oil-contaminated tropical marine sediments
- 14 March 2003
- journal article
- Published by Oxford University Press (OUP) in Letters in Applied Microbiology
- Vol. 36 (4) , 251-257
- https://doi.org/10.1046/j.1472-765x.2003.01297.x
Abstract
The aim of this study was to isolate, characterize and evaluate the importance of naphthalene-degrading bacterial strains from oil-contaminated tropical marine sediments. Three Gram-positive naphthalene-degrading bacteria were isolated from oil-contaminated tropical intertidal marine sediments by direct isolation or enrichment using naphthalene as the sole source of carbon and energy. Bacillus naphthovorans strain MN-003 can also grow on benzene, toluene, xylene and diesel fuel while Micrococcus sp. str. MN-006 can also grow on benzene. Staphylococcus sp. str. MN-005 can only degrade naphthalene and was not able to use the other aromatic hydrocarbons tested. Strain MN-003 possessed the highest maximal specific growth rate with naphthalene as sole carbon source. An enrichment culture fed with naphthalene as sole carbon source exhibited a significant increase in the relative abundances of the three isolates after 21 days of incubation. The three isolates constituted greater than 69% of the culturable naphthalene-degrading microbial community. Strain MN-003 outcompeted and dominated the other two isolates in competition studies involving batch cultures inoculated with equal cell densities of the three isolates and incubated with between 1 and 10 mg l-1 of naphthalene. Three Gram-positive naphthalene-degrading bacteria were successfully isolated from oil-contaminated tropical marine sediments. Gram-positive bacteria might play an important role in naphthalene degradation in the highly variable environment of oil-contaminated tropical intertidal marine sediments. Among the three isolates, strain MN-003 has the highest maximal specific growth rate when grown on naphthalene, and outgrew the other two isolates in competition experiments. This research will aid in the development of bioremediation schemes for oil-contaminated marine environments. Strain MN-003 could potentially be exploited in such schemes.Keywords
This publication has 24 references indexed in Scilit:
- Impact of Irradiation and Polycyclic Aromatic Hydrocarbon Spiking on Microbial Populations in Marine Sediment for Future Aging and Biodegradability StudiesApplied and Environmental Microbiology, 2002
- Bacillus naphthovorans sp. nov. from oil-contaminated tropical marine sediments and its role in naphthalene biodegradationApplied Microbiology and Biotechnology, 2002
- Enzymatic Manganese(II) Oxidation by Metabolically Dormant Spores of Diverse Bacillus SpeciesApplied and Environmental Microbiology, 2002
- Isolation and Characterization of Polycyclic Aromatic Hydrocarbon-Degrading Bacteria Associated with the Rhizosphere of Salt Marsh PlantsApplied and Environmental Microbiology, 2001
- Quantitative Molecular Analysis of the Microbial Community in Marine Arctic Sediments (Svalbard)Applied and Environmental Microbiology, 2001
- Friedmanniella spumicola sp. nov. and Friedmanniella capsulata sp. nov. from activated sludge foam: Gram-positive cocci that grow in aggregates of repeating groups of cocciInternational Journal of Systematic and Evolutionary Microbiology, 1999
- Stimulation of Diesel Fuel Biodegradation by Indigenous Nitrogen Fixing Bacterial ConsortiaMicrobial Ecology, 1999
- Bioremediation of petroleum hydrocarbon contaminants in marine habitatsCurrent Opinion in Biotechnology, 1999
- Analysis of catabolic genes for naphthalene and phenanthrene degradation in contaminated New Zealand soilsFEMS Microbiology Ecology, 1999
- Cycloclasticus pugetii gen. nov., sp. nov., an Aromatic Hydrocarbon-Degrading Bacterium from Marine SedimentsInternational Journal of Systematic and Evolutionary Microbiology, 1995