Arsenic accumulation in soil is a global problem typically addressed using phytoremediation methods. Pteris vittata, a model arsenic hyperaccumulator, has great potential as a genetically engineered plant for phytoremediation. However, the lack of omic information on this species has severely limited the identification and application of its arsenic hyperaccumulation and regulation components. In this study, we used an optimized single-molecular real-time (SMRT) strategy to create a de novo full-length transcriptomic-tonoplast proteomic database for this unsequenced fern and to determine the genetic components underlying its arsenic hyper accumulation -regulation mechanisms. We established a comprehensive network consisting of six major tra...
Pteris vittata L. is a staggeringly efficient arsenic hyperaccumulator that has been shown to be cap...
Pteris vittata can tolerate very high soil arsenic concentration and rapidly accumulates the metallo...
In this work, arsenic (As) accumulation and distribution over time in Pteris vittata young fronds fr...
Arsenic is a natural contaminant in the soil and ground water, which raises considerable concerns in...
Arsenic is a toxic metalloid that is naturally occurring and widely distributed. The consumption of ...
Pteris vittata is a fern that is extraordinary in its ability to tolerate hyperaccumulate high level...
Arsenic (As) contaminated soils and waters are becoming major global environmental and human health ...
Arsenic, a known toxin and carcinogen, is one of many elements that plants are exposed to in their e...
Hyperaccumulation of arsenic (As) by brake fern Pteris vittata has been described as an important ge...
Elemental arsenic (As) is a ubiquitous and naturally occurring contaminant of soils and ground water...
Arsenic is a class 1 carcinogen that causes widespread chronic human health issues due to the consum...
Arsenic (As) contaminated soils and waters are becoming major global environmental and human health ...
The discovery of the arsenic hyperaccumulator, Pteris vittata (Chinese brake fern), has contributed ...
Enzymatic reduction of arsenate to arsenite is the first known step in arsenate metabolism in all or...
We have constructed cDNA libraries from RNA isolated from arsenic treated gametophytes of the fern P...
Pteris vittata L. is a staggeringly efficient arsenic hyperaccumulator that has been shown to be cap...
Pteris vittata can tolerate very high soil arsenic concentration and rapidly accumulates the metallo...
In this work, arsenic (As) accumulation and distribution over time in Pteris vittata young fronds fr...
Arsenic is a natural contaminant in the soil and ground water, which raises considerable concerns in...
Arsenic is a toxic metalloid that is naturally occurring and widely distributed. The consumption of ...
Pteris vittata is a fern that is extraordinary in its ability to tolerate hyperaccumulate high level...
Arsenic (As) contaminated soils and waters are becoming major global environmental and human health ...
Arsenic, a known toxin and carcinogen, is one of many elements that plants are exposed to in their e...
Hyperaccumulation of arsenic (As) by brake fern Pteris vittata has been described as an important ge...
Elemental arsenic (As) is a ubiquitous and naturally occurring contaminant of soils and ground water...
Arsenic is a class 1 carcinogen that causes widespread chronic human health issues due to the consum...
Arsenic (As) contaminated soils and waters are becoming major global environmental and human health ...
The discovery of the arsenic hyperaccumulator, Pteris vittata (Chinese brake fern), has contributed ...
Enzymatic reduction of arsenate to arsenite is the first known step in arsenate metabolism in all or...
We have constructed cDNA libraries from RNA isolated from arsenic treated gametophytes of the fern P...
Pteris vittata L. is a staggeringly efficient arsenic hyperaccumulator that has been shown to be cap...
Pteris vittata can tolerate very high soil arsenic concentration and rapidly accumulates the metallo...
In this work, arsenic (As) accumulation and distribution over time in Pteris vittata young fronds fr...