Abstract Pteris vittata is an arsenic (As) hyperaccumulator plant that accumulates a large amount of As into fronds and rhizomes (around 16,000 mg/kg in both after 16 weeks hydroponic cultivation with 30 mg/L arsenate). However, the sequence of long-distance transport of As in this hyperaccumulator plant is unclear. In this study, we used a positron-emitting tracer imaging system (PETIS) for the first time to obtain noninvasive serial images of As behavior in living plants with positron-emitting 74As-labeled tracer. We found that As kept accumulating in rhizomes as in fronds of P. vittata, whereas As was retained in roots of a non-accumulator plant Arabidopsis thaliana. Autoradiograph results of As distribution in P. vittata showed that wit...
Arsenic (As) reduction and translocation are key processes for As hyperaccumulation by the hyperaccu...
Pteris vittata (PV) and Pteris quadriaurita (PQ) are reported to hyperaccumulate arsenic (As) when g...
Pteris vittata is the first plant reported to be a hyperaccumulator of arsenic (As), and little is k...
Pteris vittata is an arsenic (As) hyperaccumulator plant that accumulates a large amount of As into ...
In this work, arsenic (As) accumulation and distribution over time in Pteris vittata young fronds fr...
In this work, arsenic (As) accumulation and distribution over time in Pteris vittata young fronds fr...
Mechanisms of Pteris vittata L. to hyperaccumulate arsenic (As), especially the efficient translocat...
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...
The fern Pteris vittata has been the subject of numerous studies because of its extreme arsenic hype...
Pteris vittata, the first reported arsenic hyperaccumulating plant, is potentially used in phytoreme...
The fern Pteris vittata has been the subject of numerous studies because of its extreme arsenic hype...
National High Technology Research and Development Program of China 2012AA061510;National Natural Sc...
The fern Pteris vittata has been the subject of numerous studies because of its extreme arsenic hype...
The arsenic (As) hyperaccumulating fern species Pteris vittata (PV) is capable of accumulating large...
Arsenic (As) reduction and translocation are key processes for As hyperaccumulation by the hyperaccu...
Pteris vittata (PV) and Pteris quadriaurita (PQ) are reported to hyperaccumulate arsenic (As) when g...
Pteris vittata is the first plant reported to be a hyperaccumulator of arsenic (As), and little is k...
Pteris vittata is an arsenic (As) hyperaccumulator plant that accumulates a large amount of As into ...
In this work, arsenic (As) accumulation and distribution over time in Pteris vittata young fronds fr...
In this work, arsenic (As) accumulation and distribution over time in Pteris vittata young fronds fr...
Mechanisms of Pteris vittata L. to hyperaccumulate arsenic (As), especially the efficient translocat...
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...
The fern Pteris vittata has been the subject of numerous studies because of its extreme arsenic hype...
Pteris vittata, the first reported arsenic hyperaccumulating plant, is potentially used in phytoreme...
The fern Pteris vittata has been the subject of numerous studies because of its extreme arsenic hype...
National High Technology Research and Development Program of China 2012AA061510;National Natural Sc...
The fern Pteris vittata has been the subject of numerous studies because of its extreme arsenic hype...
The arsenic (As) hyperaccumulating fern species Pteris vittata (PV) is capable of accumulating large...
Arsenic (As) reduction and translocation are key processes for As hyperaccumulation by the hyperaccu...
Pteris vittata (PV) and Pteris quadriaurita (PQ) are reported to hyperaccumulate arsenic (As) when g...
Pteris vittata is the first plant reported to be a hyperaccumulator of arsenic (As), and little is k...