Soda lake sediments usually contain high concentrations of sulfide indicating active sulfate reduction. Monitoring of sulfate-reducing bacteria (SRB) in soda lakes demonstrated a dominance of two groups of culturable SRB belonging to the order Desulfovibrionales specialized in utilization of inorganic electron donors, such as formate, H2 and thiosulfate. The most interesting physiological trait of the novel haloalkaliphilic SRB isolates was their ability to grow lithotrophically by dismutation of thiosulfate and sulfite. All isolates were obligately alkaliphilic with a pH optimum at 9.5–10 and moderately salt tolerant. Among the fifteen newly isolated strains, four belonged to the genus Desulfonatronum and the others to the genus Desulfonat...
Bacteria are important participants in sulfur cycle of the extremely haloalkaline environment, e.g. ...
Bacteria are important participants in sulfur cycle of the extremely haloalkaline environment, e.g. ...
Soda lakes are naturally occurring highly alkaline and saline environments. Although the sulfur cycl...
Soda lake sediments usually contain high concentrations of sulfide indicating active sulfate reducti...
Soda lake sediments usually contain high concentrations of sulfide indicating active sulfate reducti...
Four strains of lithotrophic sulfate-reducing bacteria (SRB) have been enriched and isolated from an...
Four strains of lithotrophic sulfate-reducing bacteria (SRB) have been enriched and isolated from an...
Soda lakes represent a unique ecosystem with extremely high pH (up to 11) and salinity (up to satura...
Two novel haloalkaliphilic bacteria with dissimilatory sulfidogenic metabolism were recovered from s...
Two types of heterotrophic sulfate-reducing bacteria (SRB) were isolated from anoxic sediments of hy...
Soda lakes represent a unique ecosystem with extremely high pH (up to 11) and salinity (up to satura...
Soda lakes represent a unique ecosystem with extremely high pH (up to 11) and salinity (up to satura...
Anaerobic enrichment cultures with elemental sulfur as electron acceptor and either acetate or propi...
<p>Two novel haloalkaliphilic bacteria with dissimilatory sulfidogenic metabolism were recovered fro...
Anaerobic enrichment cultures with elemental sulfur as electron acceptor and either acetate or propi...
Bacteria are important participants in sulfur cycle of the extremely haloalkaline environment, e.g. ...
Bacteria are important participants in sulfur cycle of the extremely haloalkaline environment, e.g. ...
Soda lakes are naturally occurring highly alkaline and saline environments. Although the sulfur cycl...
Soda lake sediments usually contain high concentrations of sulfide indicating active sulfate reducti...
Soda lake sediments usually contain high concentrations of sulfide indicating active sulfate reducti...
Four strains of lithotrophic sulfate-reducing bacteria (SRB) have been enriched and isolated from an...
Four strains of lithotrophic sulfate-reducing bacteria (SRB) have been enriched and isolated from an...
Soda lakes represent a unique ecosystem with extremely high pH (up to 11) and salinity (up to satura...
Two novel haloalkaliphilic bacteria with dissimilatory sulfidogenic metabolism were recovered from s...
Two types of heterotrophic sulfate-reducing bacteria (SRB) were isolated from anoxic sediments of hy...
Soda lakes represent a unique ecosystem with extremely high pH (up to 11) and salinity (up to satura...
Soda lakes represent a unique ecosystem with extremely high pH (up to 11) and salinity (up to satura...
Anaerobic enrichment cultures with elemental sulfur as electron acceptor and either acetate or propi...
<p>Two novel haloalkaliphilic bacteria with dissimilatory sulfidogenic metabolism were recovered fro...
Anaerobic enrichment cultures with elemental sulfur as electron acceptor and either acetate or propi...
Bacteria are important participants in sulfur cycle of the extremely haloalkaline environment, e.g. ...
Bacteria are important participants in sulfur cycle of the extremely haloalkaline environment, e.g. ...
Soda lakes are naturally occurring highly alkaline and saline environments. Although the sulfur cycl...