The potential for microbially mediated anaerobic redox cycling of iron (Fe) was examined in a first-generation enrichment culture of freshwater wetland sediment microorganisms. Most probable number enumerations revealed the presence of significant populations of Fe(III)-reducing (approximately 108 cells ml-1 ) and Fe(II)-oxidizing, nitrate-reducing organisms (approximately 105 cells ml-1 ) in the freshwater sediment used to inoculate the enrichment cultures. Nitrate reduction commenced immediately following inoculation of acetate-containing (approximately 1 mM) medium with a small quantity (1% v/v) of wetland sediment, and resulted in the transient accumulation of NO2– and production of a mixture of gaseous end-products (N2O and N2) and NH4...
Enrichment and pure cultures of nitrate-reducing bacteria were shown to grow anaerobically with ferr...
Autotrophic denitrification coupled to pyrite oxidation is considered a natural nitrate attenuation ...
The Fe and N biogeochemical cycles play key roles in freshwater environments. We aimed to determine ...
The potential for microbially mediated anaerobic redox cycling of iron (Fe) was examined in a first-...
Microbial nitrate-dependent Fe(II) oxidation is known to contribute to iron biogeochemical cycling; ...
In previous studies, three different strains (BrG1, BrG2, and BrG3) of ferrous iron-oxidizing, nitra...
Microbial nitrate-dependent Fe(II) oxidation is known to contribute to iron biogeochemical cycling; ...
Anaerobic, nitrate-dependent microbial oxidation of ferrous iron was recently recognized as a new ty...
Enrichment and pure cultures of nitrate-reducing bacteria were shown to grow anaerobically with ferr...
In order to assess the importance of nitrate-dependent Fe(II) oxidation and its impact on the growth...
In previous studies, three different strains (BrG1, BrG2, and BrG3) of ferrous iron-oxidizing, nitra...
Human activities and concominant sulfur and nitrogen pollution endanger freshwater ecosystem quality...
Peatlands constitute >3% of the Earth’s terrestrial area but store approximately one third of global...
In previous studies, three different strains (BrG1, BrG2, and BrG3) of ferrous iron-oxidizing, nitra...
Redox reactions between iron and nitrogen drive the global biogeochemical cycles of these two elemen...
Enrichment and pure cultures of nitrate-reducing bacteria were shown to grow anaerobically with ferr...
Autotrophic denitrification coupled to pyrite oxidation is considered a natural nitrate attenuation ...
The Fe and N biogeochemical cycles play key roles in freshwater environments. We aimed to determine ...
The potential for microbially mediated anaerobic redox cycling of iron (Fe) was examined in a first-...
Microbial nitrate-dependent Fe(II) oxidation is known to contribute to iron biogeochemical cycling; ...
In previous studies, three different strains (BrG1, BrG2, and BrG3) of ferrous iron-oxidizing, nitra...
Microbial nitrate-dependent Fe(II) oxidation is known to contribute to iron biogeochemical cycling; ...
Anaerobic, nitrate-dependent microbial oxidation of ferrous iron was recently recognized as a new ty...
Enrichment and pure cultures of nitrate-reducing bacteria were shown to grow anaerobically with ferr...
In order to assess the importance of nitrate-dependent Fe(II) oxidation and its impact on the growth...
In previous studies, three different strains (BrG1, BrG2, and BrG3) of ferrous iron-oxidizing, nitra...
Human activities and concominant sulfur and nitrogen pollution endanger freshwater ecosystem quality...
Peatlands constitute >3% of the Earth’s terrestrial area but store approximately one third of global...
In previous studies, three different strains (BrG1, BrG2, and BrG3) of ferrous iron-oxidizing, nitra...
Redox reactions between iron and nitrogen drive the global biogeochemical cycles of these two elemen...
Enrichment and pure cultures of nitrate-reducing bacteria were shown to grow anaerobically with ferr...
Autotrophic denitrification coupled to pyrite oxidation is considered a natural nitrate attenuation ...
The Fe and N biogeochemical cycles play key roles in freshwater environments. We aimed to determine ...