Methylated arsenic (As) species are a common constituent of rice grains accounting for 10–90% of the total As. Recent studies have shown that higher plants are unlikely to methylate As in vivo suggesting that As methylation is a microbial mediated process that occurs in soils prior to plant uptake. In this study, we designed primers according to the conserved essential amino acids and structural motifs of arsenite <i>S</i>-adenosylmethionine methyltransferase (ArsM). We report for the first time the successful amplification of the prokaryotic <i>arsM</i> gene in 14 tested soils with wide ranging As concentrations. The abundance and diversity of the <i>arsM</i> gene in the rice rhizosphere soil and roots were analyzed using the designed prim...
Arsenic is a naturally occurring metalloid in the earth’s crust. Microbial processes play an evident...
Arsenic (As) poses a risk to the human health in excess exposure and microbes play an important role...
Arsenic (As) methylation and volatilization in soil can be increased after organic matter (OM) amend...
Methylated arsenic (As) species represent a significant fraction of the As accumulating in rice grai...
The interplay between rice roots and manuring with respect to arsenic speciation, subsequent assimil...
Inorganic arsenic (iAs) is a ubiquitous human carcinogen, and rice (Oryza sativa) is the main contri...
Arsenic (As) is simultaneously a ubiquitous and a toxic element. Arsenic is subject to bio-transform...
Methylated arsenic (As) species represent a significant fraction of the As accumulating in rice grai...
Microbe-mediated arsenic (As) biotransformation in paddy soils determines the fate of As in soils an...
Microbe-mediated arsenic (As) biotransformation in paddy soils determines the fate of As in soils an...
Submerged rice paddies are affected by arsenic release into the pore-water from iron (oxy)hydroxides...
Recent studies have shown that higher plants are unable to methylate arsenic (As), but it is not kno...
Recent studies have shown that higher plants are unable to methylate arsenic (As), but it is not kno...
Arsenic (As) bioavailability in the rice rhizosphere is influenced by many microbial interactions, p...
Arsenic (As) uptake by rice is largely determined by As speciation, which is strongly influenced by ...
Arsenic is a naturally occurring metalloid in the earth’s crust. Microbial processes play an evident...
Arsenic (As) poses a risk to the human health in excess exposure and microbes play an important role...
Arsenic (As) methylation and volatilization in soil can be increased after organic matter (OM) amend...
Methylated arsenic (As) species represent a significant fraction of the As accumulating in rice grai...
The interplay between rice roots and manuring with respect to arsenic speciation, subsequent assimil...
Inorganic arsenic (iAs) is a ubiquitous human carcinogen, and rice (Oryza sativa) is the main contri...
Arsenic (As) is simultaneously a ubiquitous and a toxic element. Arsenic is subject to bio-transform...
Methylated arsenic (As) species represent a significant fraction of the As accumulating in rice grai...
Microbe-mediated arsenic (As) biotransformation in paddy soils determines the fate of As in soils an...
Microbe-mediated arsenic (As) biotransformation in paddy soils determines the fate of As in soils an...
Submerged rice paddies are affected by arsenic release into the pore-water from iron (oxy)hydroxides...
Recent studies have shown that higher plants are unable to methylate arsenic (As), but it is not kno...
Recent studies have shown that higher plants are unable to methylate arsenic (As), but it is not kno...
Arsenic (As) bioavailability in the rice rhizosphere is influenced by many microbial interactions, p...
Arsenic (As) uptake by rice is largely determined by As speciation, which is strongly influenced by ...
Arsenic is a naturally occurring metalloid in the earth’s crust. Microbial processes play an evident...
Arsenic (As) poses a risk to the human health in excess exposure and microbes play an important role...
Arsenic (As) methylation and volatilization in soil can be increased after organic matter (OM) amend...