Microbial ferric iron reduction, with organic carbon or hydrogen as the electron donor, is one of the most important biogeochemical<br />processes in anoxic paddy soils; however, the diversity and community structure of hydrogen-dependent dissimilatory iron-reducers remain unknown. Potential H2-dependent Fe(III)-reducing bacteria in paddy soils were explored using enrichment cultures with ferrihydrite or goethite as the electron acceptor and hydrogen as the electron donor. Terminal restriction fragment length polymorphism (T-RFLP) analysis and cloning/sequencing were conducted to reveal bacterial community structure. Results showed that Geobacter and Clostridium were the dominant bacteria in the enrichment cultures. Fe(III) oxide mineral ph...
Iron (III)-reducing bacteria (IRB) play significant roles in the degradation of naturally occurring ...
The potential for dissimilatory ferric iron [Fe(III)] reduction in intertidal sediments of the pollu...
Fe(III)-reducing isolates were recovered from two aquifers in which Fe(III) reduction is known to be...
Purpose — Microbial ferric iron reduction is an important biogeochemical process in nonsulfidogenic ...
International audienceLowland rice fields of West Africa (Ivory Coast) and South Asia (Thailand) are...
In the saline paddy soils of Thailand, four bacterial consortia (S1, S2, S6, and S8) were isolated i...
Purpose: The aim of this study is to investigate the abundance, diversity, and distribution of archa...
Iron is among the most abundant elements in the soil of paddy fields, and its valence state and part...
Soil microbiota plays fundamental roles in maintaining ecosystem functions and services, including b...
In previous studies, three different strains (BrG1, BrG2, and BrG3) of ferrous iron-oxidizing, nitra...
In previous studies, three different strains (BrG1, BrG2, and BrG3) of ferrous iron-oxidizing, nitra...
Iron reducing organisms are ubiquitous and phylogenetically diverse. Their acitivity in the environm...
International audienceIron-reducing bacteria (IRB) are strongly involved in Fe cycling in surface en...
International audienceA culture-dependent study was performed with the aim of assessing the carbon, ...
Ferric iron was produced anaerobically from ferrous iron through the metabolic activity of recently ...
Iron (III)-reducing bacteria (IRB) play significant roles in the degradation of naturally occurring ...
The potential for dissimilatory ferric iron [Fe(III)] reduction in intertidal sediments of the pollu...
Fe(III)-reducing isolates were recovered from two aquifers in which Fe(III) reduction is known to be...
Purpose — Microbial ferric iron reduction is an important biogeochemical process in nonsulfidogenic ...
International audienceLowland rice fields of West Africa (Ivory Coast) and South Asia (Thailand) are...
In the saline paddy soils of Thailand, four bacterial consortia (S1, S2, S6, and S8) were isolated i...
Purpose: The aim of this study is to investigate the abundance, diversity, and distribution of archa...
Iron is among the most abundant elements in the soil of paddy fields, and its valence state and part...
Soil microbiota plays fundamental roles in maintaining ecosystem functions and services, including b...
In previous studies, three different strains (BrG1, BrG2, and BrG3) of ferrous iron-oxidizing, nitra...
In previous studies, three different strains (BrG1, BrG2, and BrG3) of ferrous iron-oxidizing, nitra...
Iron reducing organisms are ubiquitous and phylogenetically diverse. Their acitivity in the environm...
International audienceIron-reducing bacteria (IRB) are strongly involved in Fe cycling in surface en...
International audienceA culture-dependent study was performed with the aim of assessing the carbon, ...
Ferric iron was produced anaerobically from ferrous iron through the metabolic activity of recently ...
Iron (III)-reducing bacteria (IRB) play significant roles in the degradation of naturally occurring ...
The potential for dissimilatory ferric iron [Fe(III)] reduction in intertidal sediments of the pollu...
Fe(III)-reducing isolates were recovered from two aquifers in which Fe(III) reduction is known to be...