Literature DB >> 18754044

Bacteria associated with iron seeps in a sulfur-rich, neutral pH, freshwater ecosystem.

Suzanne C M Haaijer1, Harry R Harhangi, Bas B Meijerink, Marc Strous, Arjan Pol, Alfons J P Smolders, Karin Verwegen, Mike S M Jetten, Huub J M Op den Camp.   

Abstract

The freshwater nature reserve De Bruuk is an iron- and sulfur-rich minerotrophic peatland containing many iron seeps and forms a suitable habitat for iron and sulfur cycle bacteria. Analysis of 16S rRNA gene-based clone libraries showed a striking correlation of the bacterial population of samples from this freshwater ecosystem with the processes of iron reduction (genus Geobacter), iron oxidation (genera Leptothrix and Gallionella) and sulfur oxidation (genus Sulfuricurvum). Results from fluorescence in situ hybridization analyses with a probe specific for the beta-1 subgroup of Proteobacteria, to which the genera Leptothrix and Gallionella belong, and newly developed probes specific for the genera Geobacter and Sulfuricurvum, supported the clone library data. Molecular data suggested members of the epsilonproteobacterial genus Sulfuricurvum as contributors to the oxidation of reduced sulfur compounds in the iron seeps of De Bruuk. In an evaluation of anaerobic dimethyl sulfide (DMS)-degrading activity of sediment, incubations with the electron acceptors sulfate, ferric iron and nitrate were performed. The fastest conversion of DMS was observed with nitrate. Further, a DMS-oxidizing, nitrate-reducing enrichment culture was established with sediment material from De Bruuk. This culture was dominated by dimorphic, prosthecate bacteria, and the 16S rRNA gene sequence obtained from this enrichment was closely affiliated with Hyphomicrobium facile, which indicates that the Hyphomicrobium species are capable of both aerobic and nitrate-driven DMS degradation.

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Year:  2008        PMID: 18754044     DOI: 10.1038/ismej.2008.75

Source DB:  PubMed          Journal:  ISME J        ISSN: 1751-7362            Impact factor:   10.302


  16 in total

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5.  Repeated anaerobic microbial redox cycling of iron.

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10.  Anoxic iron cycling bacteria from an iron sulfide- and nitrate-rich freshwater environment.

Authors:  Suzanne C M Haaijer; Gijs Crienen; Mike S M Jetten; Huub J M Op den Camp
Journal:  Front Microbiol       Date:  2012-02-03       Impact factor: 5.640

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