Microbial nitrate-dependent Fe(II) oxidation is known to contribute to iron biogeochemical cycling; however, the microorganisms responsible are virtually unknown. In an effort to elucidate this microbial metabolic process in the context of an environmental system, a 14-cm sediment core was collected from a freshwater lake and geochemically characterized concurrently with the enumeration of the nitrate-dependent Fe(II)-oxidizing microbial community and subsequent isolation of a nitrate-dependent Fe(II)-oxidizing microorganism. Throughout the sediment core, ambient concentrations of Fe(II) and nitrate were observed to coexist. Concomitant most probable number enumeration revealed the presence of an abundant nitrate-dependent Fe(II)- oxidizing...
Understanding the mechanisms of anaerobic microbial iron cycling is necessary for a full appreciatio...
Autotrophic denitrification coupled to pyrite oxidation is considered a natural nitrate attenuation ...
Understanding the mechanisms of anaerobic microbial iron cycling is necessary for a full appreciatio...
Microbial nitrate-dependent Fe(II) oxidation is known to contribute to iron biogeochemical cycling; ...
Microbial nitrate-dependent Fe(II) oxidation is known to contribute to iron biogeochemical cycling; ...
Microbial nitrate-dependent Fe(II) oxidation is known to contribute to iron biogeochemical cycling; ...
Microbial nitrate-dependent Fe(II) oxidation is known to contribute to iron biogeochemical cycling; ...
The potential for microbially mediated anaerobic redox cycling of iron (Fe) was examined in a first-...
The potential for microbially mediated anaerobic redox cycling of iron (Fe) was examined in a first-...
A lithoautotrophic, Fe(II) oxidizing, nitratereducing bacterium, strain 2002 (ATCC BAA-1479; =DSM 18...
A lithoautotrophic, Fe(II) oxidizing, nitratereducing bacterium, strain 2002 (ATCC BAA-1479; =DSM 18...
Anaerobic nitrate-dependent Fe(II) oxidation is widespread in various environments and is known to b...
In previous studies, three different strains (BrG1, BrG2, and BrG3) of ferrous iron-oxidizing, nitra...
In order to assess the importance of nitrate-dependent Fe(II) oxidation and its impact on the growth...
Understanding the mechanisms of anaerobic microbial iron cycling is necessary for a full appreciatio...
Understanding the mechanisms of anaerobic microbial iron cycling is necessary for a full appreciatio...
Autotrophic denitrification coupled to pyrite oxidation is considered a natural nitrate attenuation ...
Understanding the mechanisms of anaerobic microbial iron cycling is necessary for a full appreciatio...
Microbial nitrate-dependent Fe(II) oxidation is known to contribute to iron biogeochemical cycling; ...
Microbial nitrate-dependent Fe(II) oxidation is known to contribute to iron biogeochemical cycling; ...
Microbial nitrate-dependent Fe(II) oxidation is known to contribute to iron biogeochemical cycling; ...
Microbial nitrate-dependent Fe(II) oxidation is known to contribute to iron biogeochemical cycling; ...
The potential for microbially mediated anaerobic redox cycling of iron (Fe) was examined in a first-...
The potential for microbially mediated anaerobic redox cycling of iron (Fe) was examined in a first-...
A lithoautotrophic, Fe(II) oxidizing, nitratereducing bacterium, strain 2002 (ATCC BAA-1479; =DSM 18...
A lithoautotrophic, Fe(II) oxidizing, nitratereducing bacterium, strain 2002 (ATCC BAA-1479; =DSM 18...
Anaerobic nitrate-dependent Fe(II) oxidation is widespread in various environments and is known to b...
In previous studies, three different strains (BrG1, BrG2, and BrG3) of ferrous iron-oxidizing, nitra...
In order to assess the importance of nitrate-dependent Fe(II) oxidation and its impact on the growth...
Understanding the mechanisms of anaerobic microbial iron cycling is necessary for a full appreciatio...
Understanding the mechanisms of anaerobic microbial iron cycling is necessary for a full appreciatio...
Autotrophic denitrification coupled to pyrite oxidation is considered a natural nitrate attenuation ...
Understanding the mechanisms of anaerobic microbial iron cycling is necessary for a full appreciatio...