Selenate reduction by bacteria from a selenium-rich environment

Author:

Maiers D T1,Wichlacz P L1,Thompson D L1,Bruhn D F1

Affiliation:

1. Idaho National Engineering Laboratory, Idaho Falls 83415-2203.

Abstract

Samples collected from Kesterson Reservoir were screened for bacterial presence and selenate reduction capability. Selenate concentrations of 100 mg/liter were not toxic to indigenous bacteria. Of the 44 samples collected, 20 possessed microbial populations capable of reducing selenate. Reduction was observed in 4% of the water samples, 92% of the sediment samples, and 100% of the soil samples. Microbial reduction of 100 mg of selenate per liter was complete within 1 week of incubation. Up to 75 mg of selenate per liter was reduced beyond selenite to an insoluble red precipitate. Data collected indicate that indigenous bacteria have a significant role in the biogeochemical cycling of selenium.

Publisher

American Society for Microbiology

Subject

Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology

Reference4 articles.

1. American Public Health Association. 1985. Standard methods for the examination of water and wastewater 16th ed. p. 297. American Public Health Association Washington D.C.

2. Production of dimethylselenide gas from inorganic selenium by eleven soil fungi;Barkes L.;Bull. Environ. Contam. Toxicol.,1974

3. The formation of organometalloidal and similar compounds by microorganisms. Part VII. Dimethyl telluride;Bird M. L.;J. Chem. Soc.,1939

4. 4. Burton G. A. Jr. T. H. Giddings P. DeBrine and R. Fall. 1987. High incidence of selenite-resistant bacteria from a site

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