Iron- and sulfur-oxidizing bacteria inhabiting rice rhizoplane play a significant role on arsenic biogeochemistry in flooded rice paddies, influencing arsenic translocation to rice grains. In the present study, the selective pressure of arsenic species on these microbial populations was evaluated. Rice roots from continuously flooded plants were incubated in iron sulfide (FeS) gradient tubes and exposed to either arsenate or arsenite. The biomass developed in the visible iron-oxidation band of the enrichments was analyzed by Scanning Electron Microscopy and Energy-Dispersive Spectroscopy (SEM-EDS) and the bacterial communities were characterized by 16S rRNA gene sequencing. Different Proteobacteria communities were selected depending on exp...
The microbe-driven iron cycle plays an important role in speciation transformation and migration of ...
The potential of microbial mediated iron plaque reduction, and associated arsenic (As) mobility were...
High arsenic (As) mobility in anaerobic paddy soil due to microbial Fe- and As-reducing processes re...
Arsenic contamination in rice is strictly related to water management. Recent outcomes evidenced tha...
Submerged rice paddies are affected by arsenic release into the pore-water from iron (oxy)hydroxides...
Rice is characterized by high levels of arsenic accumulation, even if cultivated in non-contaminated...
Rice is among the crops mostly affected by arsenic contamination. Whereas in arsenic contaminated so...
Arsenic (As) uptake by rice is largely determined by As speciation, which is strongly influenced by ...
Arsenic (As) uptake by rice is largely determined by As speciation, which is strongly influenced by ...
Arsenic (As)tends to mobilize in flooded paddy soil due to the reductive dissolution of the iron (ox...
Rice is characterized by high levels of arsenic accumulation, even if cultivated in non-contaminated...
the objectives of this study were as follows: (i) to discern the effect of arsenic speciation on the...
the objectives of this study were as follows: (i) to discern the effect of arsenic speciation on the...
Sparks, Donald L.Geogenic arsenic (As) causes illness to millions of people in South and Southeast ...
Organic substrates and biochar are important in controlling arsenic release from sediments and soils...
The microbe-driven iron cycle plays an important role in speciation transformation and migration of ...
The potential of microbial mediated iron plaque reduction, and associated arsenic (As) mobility were...
High arsenic (As) mobility in anaerobic paddy soil due to microbial Fe- and As-reducing processes re...
Arsenic contamination in rice is strictly related to water management. Recent outcomes evidenced tha...
Submerged rice paddies are affected by arsenic release into the pore-water from iron (oxy)hydroxides...
Rice is characterized by high levels of arsenic accumulation, even if cultivated in non-contaminated...
Rice is among the crops mostly affected by arsenic contamination. Whereas in arsenic contaminated so...
Arsenic (As) uptake by rice is largely determined by As speciation, which is strongly influenced by ...
Arsenic (As) uptake by rice is largely determined by As speciation, which is strongly influenced by ...
Arsenic (As)tends to mobilize in flooded paddy soil due to the reductive dissolution of the iron (ox...
Rice is characterized by high levels of arsenic accumulation, even if cultivated in non-contaminated...
the objectives of this study were as follows: (i) to discern the effect of arsenic speciation on the...
the objectives of this study were as follows: (i) to discern the effect of arsenic speciation on the...
Sparks, Donald L.Geogenic arsenic (As) causes illness to millions of people in South and Southeast ...
Organic substrates and biochar are important in controlling arsenic release from sediments and soils...
The microbe-driven iron cycle plays an important role in speciation transformation and migration of ...
The potential of microbial mediated iron plaque reduction, and associated arsenic (As) mobility were...
High arsenic (As) mobility in anaerobic paddy soil due to microbial Fe- and As-reducing processes re...