The potential for dissimilatory ferric iron [Fe(III)] reduction in intertidal sediments of the polluted Scheldt estuary, Northwest Europe, was assessed by combining field-based geochemical measurements with laboratory experiments on the associated microbiology. Microbial communities at a freshwater and brackish location were characterized by culture-independent 16S rRNA gene analysis, as well as enrichments, strain isolation and physiological screening. Dilution-to-extinction batch enrichments using a variety of Fe(III) sources were performed. The dilution factor of the inoculum in the enrichments had a more determining effect on the Fe(III)-reducing microbial community structure than the Fe(III) source. Well-known Fe(III) reducers, includi...
Iron reduction in subseafloor sulfate-depleted and methane-rich marine sediments is currently a subj...
In previous studies, three different strains (BrG1, BrG2, and BrG3) of ferrous iron-oxidizing, nitra...
The aim of the work was quantitative determination of Fe(III)-reducing bacteria in natural ecosystem...
The potential for dissimilatory ferric iron [Fe(III)] reduction in intertidal sediments of the pollu...
Using culture-independent 16S rRNA gene-based methods, we previously observed that Geobacteraceae we...
International audienceA culture-dependent study was performed with the aim of assessing the carbon, ...
Engineered stimulation of Fe(III) has been proposed as a strategy to enhance the immobilization of r...
Iron (III)-reducing bacteria (IRB) play significant roles in the degradation of naturally occurring ...
International audienceIron-reducing bacteria (IRB) are strongly involved in Fe cycling in surface en...
Microbial ferric iron reduction, with organic carbon or hydrogen as the electron donor, is one of th...
Microbial iron oxidation is an integral part of the iron redox cycle in wetlands. Nonetheless, relat...
Processes of iron mineralization are of great significance to the understanding of Early-Earth geoch...
Processes of iron mineralization are of great significance to the understanding of Early-Earth geoch...
Iron reducing organisms are ubiquitous and phylogenetically diverse. Their acitivity in the environm...
Iron reduction in subseafloor sulfate-depleted and methane-rich marine sediments is currently a subj...
Iron reduction in subseafloor sulfate-depleted and methane-rich marine sediments is currently a subj...
In previous studies, three different strains (BrG1, BrG2, and BrG3) of ferrous iron-oxidizing, nitra...
The aim of the work was quantitative determination of Fe(III)-reducing bacteria in natural ecosystem...
The potential for dissimilatory ferric iron [Fe(III)] reduction in intertidal sediments of the pollu...
Using culture-independent 16S rRNA gene-based methods, we previously observed that Geobacteraceae we...
International audienceA culture-dependent study was performed with the aim of assessing the carbon, ...
Engineered stimulation of Fe(III) has been proposed as a strategy to enhance the immobilization of r...
Iron (III)-reducing bacteria (IRB) play significant roles in the degradation of naturally occurring ...
International audienceIron-reducing bacteria (IRB) are strongly involved in Fe cycling in surface en...
Microbial ferric iron reduction, with organic carbon or hydrogen as the electron donor, is one of th...
Microbial iron oxidation is an integral part of the iron redox cycle in wetlands. Nonetheless, relat...
Processes of iron mineralization are of great significance to the understanding of Early-Earth geoch...
Processes of iron mineralization are of great significance to the understanding of Early-Earth geoch...
Iron reducing organisms are ubiquitous and phylogenetically diverse. Their acitivity in the environm...
Iron reduction in subseafloor sulfate-depleted and methane-rich marine sediments is currently a subj...
Iron reduction in subseafloor sulfate-depleted and methane-rich marine sediments is currently a subj...
In previous studies, three different strains (BrG1, BrG2, and BrG3) of ferrous iron-oxidizing, nitra...
The aim of the work was quantitative determination of Fe(III)-reducing bacteria in natural ecosystem...