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Sulfate Reduction and Inorganic Carbon Assimilation in Acidic Thermal Springs of the Kamchatka Peninsula.
Mikrobiologiia ; 85(4): 446-457, 2016 Jul.
Article de En | MEDLINE | ID: mdl-28853776
ABSTRACT
Thermoacidophilic sulfate reduction remains a poorly studied process, which was investigated in the present work. Radioisotope analysis with 35S-Iabeled sulfate was used to determine the rates of dissimilatory sulfate reduction in acidic thermal springs of Kamchatka, Russia. Sulfate reduction rates were found to vary from 0.054 to 12.9 nmol S04/(cm3 day). The Neftyanaya ploshchadka spring (Uzon caldera, 60'C, pH 4.2) and Oreshek spring (Mutnovskii volcano, 91'C, pH 3.5) exhibited the highest activity of sulfate-reducing prokaryotes. Stable enrich- ment'cultures reducing sulfate at pH and temperature values close to'the environmental ones were obtained from these springs. Analysis of the 16S rRNA gene sequences revealed that'a chemolithoautotrophic bacterium Ther- modesufobium sp. 3127-1 was responsible for sulfate reduction in the enrichment from the Oil Site spring. A chemoorganoheterotrophic archaeon Vulcanisaeta sp. 3102-1 (phylum Crenarchaeota) was identified in the en- richment from Oreshek spring. Thus, dissimilatory sulfate reduction under thermoacidophilic conditions was demonstrated and the agents responsible for this process were revealed.
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Collection: 01-internacional Base de données: MEDLINE Sujet principal: Microbiologie de l'eau / ARN ribosomique 16S / Bactéries sulfato-réductrices / Crenarchaeota / Sources thermales / Clostridiales Pays/Région comme sujet: Asia / Europa Langue: En Journal: Mikrobiologiia Année: 2016 Type de document: Article
Recherche sur Google
Collection: 01-internacional Base de données: MEDLINE Sujet principal: Microbiologie de l'eau / ARN ribosomique 16S / Bactéries sulfato-réductrices / Crenarchaeota / Sources thermales / Clostridiales Pays/Région comme sujet: Asia / Europa Langue: En Journal: Mikrobiologiia Année: 2016 Type de document: Article