Heavy metal redistribution is relevant for the quality of edible crops and the suitability of hyperaccumulators for bioremediation. Root-to-shoot transfer via the xylem and redistribution in the aerial parts via the phloem differ between various heavy metals. In general, cadmium is more slowly released to the shoot than zinc (e.g., in wheat, bean, and lupin). However, rapid cadmium transport to the shoot was detected in the hyperaccumulator Solanum nigrum L. This is a key aspect in this article and might be important for bioremediation. The radionuclides 109Cd and 65Zn were used to investigate the respective influence of elevated cadmium or zinc in the root medium on the dynamics of the two heavy metals in S. nigrum. Although transport via ...
International audiencePoplar plants were exposed during 61 days to a soil added with heavy metals so...
Cadmium (Cd) may accumulate in plants to levels that are of concern in human diets. Our ability to p...
Place: Philadelphia Publisher: Taylor & Francis Inc WOS:000553349100001International audienceCadmium...
• Background and Aims The uptake, translocation and redistribution of the heavy metals zinc, mangane...
The focus of this article was to explore the translocation of Cd-109, Co-57, Zn-65, Ni-63, and Cs-13...
Crop plants often accumulate heavy metals to concentrations that exceed recommended food standard gu...
Copper, zinc, manganese, iron, nickel and molybdenum are essential micronutrients for plants. Howeve...
Arabidopsis halleri ssp. gemmifera is classified as Cd and Zn hyperaccumulator plant, however, the d...
Arabidopsis halleri is a well-known zinc (Zn) hyperaccumulator, but its status as a cadmium (Cd) hyp...
Effect of varied zinc (Zn) supply (0, 0.1, 1, 5 µM) on re-translocation of radio-labeled cadmium (10...
Environmental context Soils contaminated with metals can pose both environmental and human health ri...
WOS: 000086529500029Effect of varied zinc (Zn) supply (0, 0.1, 1, 5 mu M) on re-translocation of rad...
Non-accumulated metals in mixed metal contaminated soils may affect hyperaccumulator growth and meta...
Heavy metal accumulation in edible plants grown in contaminated soils poses a major environmental ri...
The toxic heavy metal cadmium is taken up by plants and may contaminate harvested parts of agricultu...
International audiencePoplar plants were exposed during 61 days to a soil added with heavy metals so...
Cadmium (Cd) may accumulate in plants to levels that are of concern in human diets. Our ability to p...
Place: Philadelphia Publisher: Taylor & Francis Inc WOS:000553349100001International audienceCadmium...
• Background and Aims The uptake, translocation and redistribution of the heavy metals zinc, mangane...
The focus of this article was to explore the translocation of Cd-109, Co-57, Zn-65, Ni-63, and Cs-13...
Crop plants often accumulate heavy metals to concentrations that exceed recommended food standard gu...
Copper, zinc, manganese, iron, nickel and molybdenum are essential micronutrients for plants. Howeve...
Arabidopsis halleri ssp. gemmifera is classified as Cd and Zn hyperaccumulator plant, however, the d...
Arabidopsis halleri is a well-known zinc (Zn) hyperaccumulator, but its status as a cadmium (Cd) hyp...
Effect of varied zinc (Zn) supply (0, 0.1, 1, 5 µM) on re-translocation of radio-labeled cadmium (10...
Environmental context Soils contaminated with metals can pose both environmental and human health ri...
WOS: 000086529500029Effect of varied zinc (Zn) supply (0, 0.1, 1, 5 mu M) on re-translocation of rad...
Non-accumulated metals in mixed metal contaminated soils may affect hyperaccumulator growth and meta...
Heavy metal accumulation in edible plants grown in contaminated soils poses a major environmental ri...
The toxic heavy metal cadmium is taken up by plants and may contaminate harvested parts of agricultu...
International audiencePoplar plants were exposed during 61 days to a soil added with heavy metals so...
Cadmium (Cd) may accumulate in plants to levels that are of concern in human diets. Our ability to p...
Place: Philadelphia Publisher: Taylor & Francis Inc WOS:000553349100001International audienceCadmium...