Arsenic (As) uptake by rice is largely determined by As speciation, which is strongly influenced by microbial activities. However, little is known about interactions between root and rhizosphere microbes, particularly on arsenic oxidation and reduction. In this study, two rice cultivars with different radial oxygen loss (ROL) ability were used to investigate the impact of microbially mediated As redox changes in the rhizosphere on As uptake. Results showed that the cultivar with higher ROL (Yangdao) had lower As uptake than that with lower ROL (Nongken). The enhancement of the rhizospheric effect on the abundance of the arsenite (As(III)) oxidase gene (<i>aroA</i>-like) was greater than on the arsenate (As(V)) reductase gene (<i>arsC</i>)...
High arsenic (As) mobility in anaerobic paddy soil due to microbial Fe- and As-reducing processes re...
Arsenic (As), a potentially toxic metalloid released in the soil environment as a result of natural ...
The interplay between rice roots and manuring with respect to arsenic speciation, subsequent assimil...
Arsenic (As) uptake by rice is largely determined by As speciation, which is strongly influenced by ...
Submerged rice paddies are affected by arsenic release into the pore-water from iron (oxy)hydroxides...
Arsenic contamination in rice is strictly related to water management. Recent outcomes evidenced tha...
Rice is characterized by high levels of arsenic accumulation, even if cultivated in non-contaminated...
The microbe-driven iron cycle plays an important role in speciation transformation and migration of ...
Arsenic (As) elevation in paddy soils will have a negative impact on both the yield and grain qualit...
Iron- and sulfur-oxidizing bacteria inhabiting rice rhizoplane play a significant role on arsenic bi...
Elevated arsenic (As) concentrations in rice and the soil solution result from changes in soil redox...
Arsenic (As) bioavailability in the rice rhizosphere is influenced by many microbial interactions, p...
Arsenic (As) exposure from rice consumption has now become a global health issue. This study aimed t...
Rice is among the crops mostly affected by arsenic contamination. Whereas in arsenic contaminated so...
Cadmium (Cd) and arsenic (As) contamination in paddy soils poses serious health risks to humans. The...
High arsenic (As) mobility in anaerobic paddy soil due to microbial Fe- and As-reducing processes re...
Arsenic (As), a potentially toxic metalloid released in the soil environment as a result of natural ...
The interplay between rice roots and manuring with respect to arsenic speciation, subsequent assimil...
Arsenic (As) uptake by rice is largely determined by As speciation, which is strongly influenced by ...
Submerged rice paddies are affected by arsenic release into the pore-water from iron (oxy)hydroxides...
Arsenic contamination in rice is strictly related to water management. Recent outcomes evidenced tha...
Rice is characterized by high levels of arsenic accumulation, even if cultivated in non-contaminated...
The microbe-driven iron cycle plays an important role in speciation transformation and migration of ...
Arsenic (As) elevation in paddy soils will have a negative impact on both the yield and grain qualit...
Iron- and sulfur-oxidizing bacteria inhabiting rice rhizoplane play a significant role on arsenic bi...
Elevated arsenic (As) concentrations in rice and the soil solution result from changes in soil redox...
Arsenic (As) bioavailability in the rice rhizosphere is influenced by many microbial interactions, p...
Arsenic (As) exposure from rice consumption has now become a global health issue. This study aimed t...
Rice is among the crops mostly affected by arsenic contamination. Whereas in arsenic contaminated so...
Cadmium (Cd) and arsenic (As) contamination in paddy soils poses serious health risks to humans. The...
High arsenic (As) mobility in anaerobic paddy soil due to microbial Fe- and As-reducing processes re...
Arsenic (As), a potentially toxic metalloid released in the soil environment as a result of natural ...
The interplay between rice roots and manuring with respect to arsenic speciation, subsequent assimil...