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Low temperature S(0) biomineralization at a supraglacial spring system in the Canadian High Arctic.
- Source :
-
Geobiology [Geobiology] 2011 Jul; Vol. 9 (4), pp. 360-75. Date of Electronic Publication: 2011 May 19. - Publication Year :
- 2011
-
Abstract
- Elemental sulfur (S(0) ) is deposited each summer onto surface ice at Borup Fiord pass on Ellesmere Island, Canada, when high concentrations of aqueous H(2) S are discharged from a supraglacial spring system. 16S rRNA gene clone libraries generated from sulfur deposits were dominated by β-Proteobacteria, particularly Ralstonia sp. Sulfur-cycling micro-organisms such as Thiomicrospira sp., and ε-Proteobacteria such as Sulfuricurvales and Sulfurovumales spp. were also abundant. Concurrent cultivation experiments isolated psychrophilic, sulfide-oxidizing consortia, which produce S(0) in opposing gradients of Na(2) S and oxygen. 16S rRNA gene analyses of sulfur precipitated in gradient tubes show stable sulfur-biomineralizing consortia dominated by Marinobacter sp. in association with Shewanella, Loktanella, Rubrobacter, Flavobacterium, and Sphingomonas spp. Organisms closely related to cultivars appear in environmental 16S rRNA clone libraries; none currently known to oxidize sulfide. Once consortia were simplified to Marinobacter and Flavobacteria spp. through dilution-to-extinction and agar removal, sulfur biomineralization continued. Shewanella, Loktanella, Sphingomonas, and Devosia spp. were also isolated on heterotrophic media, but none produced S(0) alone when reintroduced to Na(2) S gradient tubes. Tubes inoculated with a Marinobacter and Shewanella spp. co-culture did show sulfur biomineralization, suggesting that Marinobacter may be the key sulfide oxidizer in laboratory experiments. Light, florescence and scanning electron microscopy of mineral aggregates produced in Marinobacter experiments revealed abundant cells, with filaments and sheaths variably mineralized with extracellular submicron sulfur grains; similar biomineralization was not observed in abiotic controls. Detailed characterization of mineral products associated with low temperature microbial sulfur-cycling may provide biosignatures relevant to future exploration of Europa and Mars.<br /> (© 2011 Blackwell Publishing Ltd.)
- Subjects :
- Arctic Regions
Cold Temperature
Gene Library
Ice Cover chemistry
Marinobacter genetics
Marinobacter isolation & purification
Nunavut
Piscirickettsiaceae genetics
Piscirickettsiaceae isolation & purification
RNA, Ribosomal, 16S genetics
Ralstonia genetics
Ralstonia isolation & purification
Sulfur isolation & purification
Environmental Microbiology
Ice Cover microbiology
Sulfur metabolism
Subjects
Details
- Language :
- English
- ISSN :
- 1472-4669
- Volume :
- 9
- Issue :
- 4
- Database :
- MEDLINE
- Journal :
- Geobiology
- Publication Type :
- Academic Journal
- Accession number :
- 21592302
- Full Text :
- https://doi.org/10.1111/j.1472-4669.2011.00283.x