Recovery of Humic-Reducing Bacteria from a Diversity of Environments

Author:

Coates John D.1,Ellis Debra J.2,Blunt-Harris Elizabeth L.2,Gaw Catherine V.2,Roden Eric E.3,Lovley Derek R.2

Affiliation:

1. Department of Microbiology, Southern Illinois University, Carbondale, Illinois 629011;

2. Department of Microbiology, University of Massachusetts, Amherst, Massachusetts 010032; and

3. Department of Biological Sciences, University of Alabama, Tuscaloosa, Alabama 35487-02063

Abstract

ABSTRACT To evaluate which microorganisms might be responsible for microbial reduction of humic substances in sedimentary environments, humic-reducing bacteria were isolated from a variety of sediment types. These included lake sediments, pristine and contaminated wetland sediments, and marine sediments. In each of the sediment types, all of the humic reducers recovered with acetate as the electron donor and the humic substance analog, 2,6-anthraquinone disulfonate (AQDS), as the electron acceptor were members of the family Geobacteraceae . This was true whether the AQDS-reducing bacteria were enriched prior to isolation on solid media or were recovered from the highest positive dilutions of sediments in liquid media. All of the isolates tested not only conserved energy to support growth from acetate oxidation coupled to AQDS reduction but also could oxidize acetate with highly purified soil humic acids as the sole electron acceptor. All of the isolates tested were also able to grow with Fe(III) serving as the sole electron acceptor. This is consistent with previous studies that have suggested that the capacity for Fe(III) reduction is a common feature of all members of the Geobacteraceae . These studies demonstrate that the potential for microbial humic substance reduction can be found in a wide variety of sediment types and suggest that Geobacteraceae species might be important humic-reducing organisms in sediments.

Publisher

American Society for Microbiology

Subject

Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology

Reference35 articles.

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3. Geovibrio ferrireducens, a phylogenetically distinct dissimilatory Fe(III)-reducing bacterium.;Caccavo F.;Arch. Microbiol.,1996

4. Coates J. D. Unpublished data.

5. Oxidation of Polycyclic Aromatic Hydrocarbons under Sulfate-Reducing Conditions

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