The ability of microorganisms to mediate the transformation of iron coupled with the participation of iron as a reactive redox species in natural waters and sediments has prompted recent speculation that such bacteria play an important role in such activities as global iron cycling, biologically induced mineral formation, and localized competition for available organic substrates. Microaerophilic soil bacteria dominate the list of microorganisms capable of iron reduction. However, screening experiments have shown that the marine eubacterium Alteromonas putrefaciens strain 200 is one of the most efficient iron reducers yet isolated. Respiratory inhibitor studies have suggested that a branched respiratory chain and two ferri-reductases (one c...
Dissimilatory Fe(III) and Mn(IV) reduction is an anaerobic respiratory process common to many enviro...
Aerobic respiration and dissimilative iron reduction were studied in pure, batch cultures of Pseudom...
Under anaerobic conditions, Shewanella putrefaciens is capable of respiratory-chain-linked, high-rat...
The ability of microorganisms to mediate the transformation of iron coupled with the participation o...
The ability of microorganisms to mediate the transformation of iron coupled with the participation o...
Complementary genetic and biochemical analyses have been used to study the (dissimilative) iron redu...
Shewanella oneidensis MR-1 is a gram-negative γ-proteobacterium that can use oxidizing molecules suc...
Iron reducing organisms are ubiquitous and phylogenetically diverse. Their acitivity in the environm...
Ferric iron was produced anaerobically from ferrous iron through the metabolic activity of recently ...
Microorganisms have the capacity to modify iron oxides during anaerobic respiration. When the dissim...
In previous studies, three different strains (BrG1, BrG2, and BrG3) of ferrous iron-oxidizing, nitra...
Fertilization with a mixture of steelmaking slag and compost can affect the supply of dissolved iron...
Growth experiments with G. sulfurreducens and S. oneidensis MR-1 on different Fe(III)-electronaccept...
In tropical iron ore regions, biologically mediated reduction of crystalline iron oxides drives ongo...
Dissimilatory Fe(III) and Mn(IV) reduction is an anaerobic respiratory process common to many enviro...
Dissimilatory Fe(III) and Mn(IV) reduction is an anaerobic respiratory process common to many enviro...
Aerobic respiration and dissimilative iron reduction were studied in pure, batch cultures of Pseudom...
Under anaerobic conditions, Shewanella putrefaciens is capable of respiratory-chain-linked, high-rat...
The ability of microorganisms to mediate the transformation of iron coupled with the participation o...
The ability of microorganisms to mediate the transformation of iron coupled with the participation o...
Complementary genetic and biochemical analyses have been used to study the (dissimilative) iron redu...
Shewanella oneidensis MR-1 is a gram-negative γ-proteobacterium that can use oxidizing molecules suc...
Iron reducing organisms are ubiquitous and phylogenetically diverse. Their acitivity in the environm...
Ferric iron was produced anaerobically from ferrous iron through the metabolic activity of recently ...
Microorganisms have the capacity to modify iron oxides during anaerobic respiration. When the dissim...
In previous studies, three different strains (BrG1, BrG2, and BrG3) of ferrous iron-oxidizing, nitra...
Fertilization with a mixture of steelmaking slag and compost can affect the supply of dissolved iron...
Growth experiments with G. sulfurreducens and S. oneidensis MR-1 on different Fe(III)-electronaccept...
In tropical iron ore regions, biologically mediated reduction of crystalline iron oxides drives ongo...
Dissimilatory Fe(III) and Mn(IV) reduction is an anaerobic respiratory process common to many enviro...
Dissimilatory Fe(III) and Mn(IV) reduction is an anaerobic respiratory process common to many enviro...
Aerobic respiration and dissimilative iron reduction were studied in pure, batch cultures of Pseudom...
Under anaerobic conditions, Shewanella putrefaciens is capable of respiratory-chain-linked, high-rat...