The Microbial Community Structure in Petroleum-Contaminated Sediments Corresponds to Geophysical Signatures

Author:

Allen Jonathan P.1,Atekwana Estella A.2,Atekwana Eliot A.2,Duris Joseph W.1,Werkema D. Dale3,Rossbach Silvia1

Affiliation:

1. Department of Biological Sciences, Western Michigan University, Kalamazoo, Michigan 49008-5410

2. T. Boone Pickens School of Geology, Oklahoma State University, 105 Noble Research Center, Stillwater, Oklahoma 74078-3031

3. Characterization and Monitoring Branch, Environmental Sciences Division, National Exposure Research Laboratory, Office of Research and Development, U.S. Environmental Protection Agency, Las Vegas, Nevada 89119

Abstract

ABSTRACT The interdependence between geoelectrical signatures at underground petroleum plumes and the structures of subsurface microbial communities was investigated. For sediments contaminated with light non-aqueous-phase liquids, anomalous high conductivity values have been observed. Vertical changes in the geoelectrical properties of the sediments were concomitant with significant changes in the microbial community structures as determined by the construction and evaluation of 16S rRNA gene libraries. DNA sequencing of clones from four 16S rRNA gene libraries from different depths of a contaminated field site and two libraries from an uncontaminated background site revealed spatial heterogeneity in the microbial community structures. Correspondence analysis showed that the presence of distinct microbial populations, including the various hydrocarbon-degrading, syntrophic, sulfate-reducing, and dissimilatory-iron-reducing populations, was a contributing factor to the elevated geoelectrical measurements. Thus, through their growth and metabolic activities, microbial populations that have adapted to the use of petroleum as a carbon source can strongly influence their geophysical surroundings. Since changes in the geophysical properties of contaminated sediments parallel changes in the microbial community compositions, it is suggested that geoelectrical measurements can be a cost-efficient tool to guide microbiological sampling for microbial ecology studies during the monitoring of natural or engineered bioremediation processes.

Publisher

American Society for Microbiology

Subject

Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology

Reference58 articles.

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2. Abdel Aal, G. Z., L. D. Slater, and E. A. Atekwana. 2006. Induced-polarization measurements on unconsolidated sediments from a site of active hydrocarbon biodegradation. Geophysics71:H13-H24.

3. Basic local alignment search tool

4. Archie, G. E. 1942. The electrical resistivity log as an aid in determining some reservoir characteristics. Trans. Am. Inst. Mining Metallurg. Pet. Eng.146:54-62.

5. Atekwana, E. A., E. A. Atekwana, F. D. Legall, and R. V. Krishnamurthy. 2005. Biodegradation and mineral weathering controls on bulk electrical conductivity in a shallow hydrocarbon contaminated aquifer. J. Contam. Hydrol.80:149-167.

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