Literature DB >> 17028873

Methanol utilizing Desulfotomaculum species utilizes hydrogen in a methanol-fed sulfate-reducing bioreactor.

Melike Balk1, Jan Weijma, Heleen P Goorissen, Mariska Ronteltap, Theo A Hansen, Alfons J M Stams.   

Abstract

A sulfate-reducing bacterium, strain WW1, was isolated from a thermophilic bioreactor operated at 65 degrees C with methanol as sole energy source in the presence of sulfate. Growth of strain WW1 on methanol or acetate was inhibited at a sulfide concentration of 200 mg l(-1), while on H2/CO2, no apparent inhibition occurred up to a concentration of 500 mg l(-1). When strain WW1 was co-cultured under the same conditions with the methanol-utilizing, non-sulfate-reducing bacteria, Thermotoga lettingae and Moorella mulderi, both originating from the same bioreactor, growth and sulfide formation were observed up to 430 mg l(-1). These results indicated that in the co-cultures, a major part of the electron flow was directed from methanol via H2/CO2 to the reduction of sulfate to sulfide. Besides methanol, acetate, and hydrogen, strain WW1 was also able to use formate, malate, fumarate, propionate, succinate, butyrate, ethanol, propanol, butanol, isobutanol, with concomitant reduction of sulfate to sulfide. In the absence of sulfate, strain WW1 grew only on pyruvate and lactate. On the basis of 16S rRNA analysis, strain WW1 was most closely related to Desulfotomaculum thermocisternum and Desulfotomaculum australicum. However, physiological properties of strain WW1 differed in some aspects from those of the two related bacteria.

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Year:  2006        PMID: 17028873     DOI: 10.1007/s00253-006-0590-4

Source DB:  PubMed          Journal:  Appl Microbiol Biotechnol        ISSN: 0175-7598            Impact factor:   4.813


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2.  Physiological, genomic, and sulfur isotopic characterization of methanol metabolism by Desulfovibrio carbinolicus.

Authors:  Min Sub Sim; Connor T Skennerton; Victoria J Orphan
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3.  The deep-subsurface sulfate reducer Desulfotomaculum kuznetsovii employs two methanol-degrading pathways.

Authors:  Diana Z Sousa; Michael Visser; Antonie H van Gelder; Sjef Boeren; Mervin M Pieterse; Martijn W H Pinkse; Peter D E M Verhaert; Carsten Vogt; Steffi Franke; Steffen Kümmel; Alfons J M Stams
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4.  Effect of sulfate addition on carbon flow and microbial community composition during thermophilic digestion of cellulose.

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  4 in total

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