National Natural Science Foundation of China 41071215;Natural Science Foundation of China-Guangdong Joint Foundation of China U0833004;Chinese Academy of Sciences KZCX2-YW-Q02-02Arsenic (As) reduction and translocation are key processes for As hyperaccumulation by the hyperaccumulator Pteris vittata L Micro-X-ray adsorption spectroscopy of P. vittata's rhizoid tissues revealed that As reduction mainly occurred in endodermis during translocation from epidermis to vascular bundle. Prior to reduction, arsenate (As (V)) translocation was an active process requiring energy and employing a phosphate (P) transporter. Use of a synchrotron X-ray microprobe showed that As (V) and P were cotransported and that this process could be enhanced by As (...
Pteris vittata is an arsenic (As) hyperaccumulator plant that accumulates a large amount of As into ...
National Natural Science Foundation of China 41071215;Natural Science Foundation of China-Guangdong...
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...
In order to understand the similarity or difference of inorganic As species uptake and transport rel...
Pteris vittata, the first reported arsenic hyperaccumulating plant, is potentially used in phytoreme...
The hyperaccumulator Pteris vittata translocates arsenic (As) from roots to fronds efficiently, but ...
4Pteris vittata may effectively reduce arsenite in its fronds. This study examined the roles of arse...
Mechanisms of Pteris vittata L. to hyperaccumulate arsenic (As), especially the efficient translocat...
Arsenate (AsV) and arsenite (AsIII) are two dominant arsenic species in the environment. While arsen...
Arsenic (As) contaminated soils and waters are becoming major global environmental and human health ...
Although it is known that the first As hyperaccumulator identified, Pteris vittata L., could exist i...
The subcellular distribution of arsenic (As) in Pteris vittata L., an As-hyperaccumulator, was studi...
The arsenic (As) hyperaccumulating fern species Pteris vittata (PV) is capable of accumulating large...
The interaction between arsenic (As) and phenanthrene (PHE) in Pteris vittata L. was investigated in...
Pteris vittata is an arsenic (As) hyperaccumulator plant that accumulates a large amount of As into ...
National Natural Science Foundation of China 41071215;Natural Science Foundation of China-Guangdong...
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...
In order to understand the similarity or difference of inorganic As species uptake and transport rel...
Pteris vittata, the first reported arsenic hyperaccumulating plant, is potentially used in phytoreme...
The hyperaccumulator Pteris vittata translocates arsenic (As) from roots to fronds efficiently, but ...
4Pteris vittata may effectively reduce arsenite in its fronds. This study examined the roles of arse...
Mechanisms of Pteris vittata L. to hyperaccumulate arsenic (As), especially the efficient translocat...
Arsenate (AsV) and arsenite (AsIII) are two dominant arsenic species in the environment. While arsen...
Arsenic (As) contaminated soils and waters are becoming major global environmental and human health ...
Although it is known that the first As hyperaccumulator identified, Pteris vittata L., could exist i...
The subcellular distribution of arsenic (As) in Pteris vittata L., an As-hyperaccumulator, was studi...
The arsenic (As) hyperaccumulating fern species Pteris vittata (PV) is capable of accumulating large...
The interaction between arsenic (As) and phenanthrene (PHE) in Pteris vittata L. was investigated in...
Pteris vittata is an arsenic (As) hyperaccumulator plant that accumulates a large amount of As into ...
National Natural Science Foundation of China 41071215;Natural Science Foundation of China-Guangdong...
The arsenic (As) hyperaccumulating fern species Pteris vittata (PV) is capable of accumulating large...