Accumulation of arsenic (As) within plant tissues represents a human health risk, but there remains much to learn regarding the speciation of As within plants. We developed synchrotron-based fluorescence-X-ray absorption near-edge spectroscopy (fluorescence-XANES) imaging in hydrated and fresh plant tissues to provide laterally resolved data on the in situ speciation of As in roots of wheat (Triticum aestivum) and rice (Oryza sativa) exposed to 2\ua0μM As(V) or As(III). When exposed to As(V), the As was rapidly reduced to As(III) within the root, with As(V) calculated to be present only in the rhizodermis. However, no uncomplexed As(III) was detected in any root tissues, because of the efficient formation of the As(III)-thiol complex - this...
Phytoremediation of arsenic contamination using the hyperaccumulator Pteris vittata is an active are...
New in vivo X-ray absorption near edge structure measuring technique was developed by using liquid n...
Rice (Oryza sativa) takes up arsenite mainly through the silicic acid transport pathway. Understandi...
Arsenic (As) is considered to be the environmental contaminant of greatest concern due to its potent...
Copyright © 2006 American Chemical SocietyThe fern Pteris vittata accumulates unusually high levels ...
The uptake of arsenite (As(III)i) at the Casparian band via Lsi1 and Lsi2 Si transporters is respons...
The fern Pteris vittata has been the subject of numerous studies because of its extreme arsenic hype...
In this study, a sequential extraction procedure (SEP) and X-ray absorption near edge structure (XAN...
Here, we present a new scheme of analysis combining micro-energy dispersive X-ray fluorescence spect...
Speciation of arsenic (As) in rice, the most As affected crop, and Ceratophyllum demersum, a good la...
The fern Pteris vittata has been the subject of numerous studies because of its extreme arsenic hype...
Rice irrigated with arsenic (As) contaminated groundwater can contain concentrations of As in the gr...
P>In order to gain insights into the transport and distribution of arsenic (As) in intact rice (O...
The fern Pteris vittata has been the subject of numerous studies because of its extreme arsenic hype...
Phytoremediation of arsenic contamination using the hyperaccumulator Pteris vittata is an active are...
Phytoremediation of arsenic contamination using the hyperaccumulator Pteris vittata is an active are...
New in vivo X-ray absorption near edge structure measuring technique was developed by using liquid n...
Rice (Oryza sativa) takes up arsenite mainly through the silicic acid transport pathway. Understandi...
Arsenic (As) is considered to be the environmental contaminant of greatest concern due to its potent...
Copyright © 2006 American Chemical SocietyThe fern Pteris vittata accumulates unusually high levels ...
The uptake of arsenite (As(III)i) at the Casparian band via Lsi1 and Lsi2 Si transporters is respons...
The fern Pteris vittata has been the subject of numerous studies because of its extreme arsenic hype...
In this study, a sequential extraction procedure (SEP) and X-ray absorption near edge structure (XAN...
Here, we present a new scheme of analysis combining micro-energy dispersive X-ray fluorescence spect...
Speciation of arsenic (As) in rice, the most As affected crop, and Ceratophyllum demersum, a good la...
The fern Pteris vittata has been the subject of numerous studies because of its extreme arsenic hype...
Rice irrigated with arsenic (As) contaminated groundwater can contain concentrations of As in the gr...
P>In order to gain insights into the transport and distribution of arsenic (As) in intact rice (O...
The fern Pteris vittata has been the subject of numerous studies because of its extreme arsenic hype...
Phytoremediation of arsenic contamination using the hyperaccumulator Pteris vittata is an active are...
Phytoremediation of arsenic contamination using the hyperaccumulator Pteris vittata is an active are...
New in vivo X-ray absorption near edge structure measuring technique was developed by using liquid n...
Rice (Oryza sativa) takes up arsenite mainly through the silicic acid transport pathway. Understandi...