Microbiological analysis of the population of extremely haloalkaliphilic sulfur-oxidizing bacteria dominating in lab-scale sulfide-removing bioreactors

Author:

Sorokin D. Y.,van den Bosch P. L. F.,Abbas B.,Janssen A. J. H.,Muyzer G.

Publisher

Springer Science and Business Media LLC

Subject

Applied Microbiology and Biotechnology,General Medicine,Biotechnology

Reference23 articles.

1. Banciu H, Kleerebezem R, Muyzer G, Kuenen JG, Sorokin DY (2004a) Application of haloalkaliphilic sulfur-oxidizing bacteria for the removal of H2S from gas streams. In: Verstraete W (ed) European Symposium on Environmental Biotechnology, ESEB 2004, Proceedings, Oostende, Belgium, April 25–28, 2004, pp 345–348

2. Banciu H, Sorokin DY, Muyzer G, Kleerebezem R, Galinski EA, Kuenen JG (2004b) Thioalkalivibrio halophilus sp. nov, a novel obligately chemolithoautotrophic facultatively alkaliphilic and extremely salt-tolerant sulfur-oxidizing bacterium from a hypersaline alkaline lake. Extremophiles 8:325–334

3. Buisman CJN, Geraarts BG, IJspeert P, Lettinga G (1990) Optimization of sulphur production in a biotechnological sulphide-removing reactor. Biotechnol Bioeng 35:50–56

4. Foti M, Ma S, Sorokin DYu, Rademaker JLW, Kuenen JG, Muyzer G (2006) Genetic diversity and biogeography of haloalkaliphilic sulfur-oxidizing bacteria belonging the genus Thioalkalivibrio. FEMS Microbiol Ecol 56:95–101

5. Griesbeck C, Hauska G, Schütz M (2000) Biological sulfide oxidation: sulfide-quinone reductase (SQR), the primary reaction. In: Pandalai SG (ed) Recent research developments in microbiology. vol. 4. Research Signpost, Trivadrum, India, pp 179–203

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