The discovery of nickel hyperaccumulation, in Pycnandra acuminata, was the start of a global quest in this fascinating phenomenon. Despite recent advances in the physiology and molecular genetics of hyperaccumulation, the mechanisms and tolerance of Ni accumulation in the most extreme example reported to date, P. acuminata, remains enigmatic. We conducted a hydroponic experiment to establish Ni tolerance levels and translocation patterns in roots and shoots of P. acuminata, and analyzed elemental partitioning to gain insights into Ni regulation. We combined a phylogeny and foliar Ni concentrations to assess the incidence of hyperaccumulation within the genus Pycnandra. Hydroponic dosing experiments revealed that P. acuminata can resist extr...
Abstract: A comparative analysis of nickel (Ni) accumulation by the hyperaccumulator Noccaea japonic...
The mechanisms responsible for nickel (Ni) hyperaccumulation in Hybanthus floribundus (Lindl.) F.Mue...
Metal hyperaccumulator plants accumulate and detoxify extraordinarily high concentrations of metal i...
Hyperaccumulator plants are unusual plants that accumulate particular metals or metalloids, such as ...
The extraordinary level of accumulation of nickel (Ni) in hyperaccumulator plants is a consequence o...
Background: Hyperaccumulator plants are unusual plants that accumulate particular metals or metalloi...
Metal hyperaccumulation is a rare and fascinating phenomenon, whereby plants actively accumulate hig...
Globally, the majority of Ni hyperaccumulator plants occur on ultramafic soils in tropical regions, ...
Hyperaccumulator plant species are able to accumulate between 1-5% of their biomass as metal. Howeve...
International audienceWhile an excess of metals such as zinc, cadmium or nickel (Ni) is toxic for mo...
International audienceWorldwide, more than 450 plant species scattered through 40+ families are know...
'Phytoremediation, the use of plants for environmental cleanup of pollutants, including toxic metals...
Hyperaccumulation is generally highly specific for a single element, for example nickel (Ni). The re...
Hyperaccumulation is generally highly specific for a single element, for example nickel (Ni). The re...
Hyperaccumulator plants have the unique ability to concentrate specific elements in their shoot in c...
Abstract: A comparative analysis of nickel (Ni) accumulation by the hyperaccumulator Noccaea japonic...
The mechanisms responsible for nickel (Ni) hyperaccumulation in Hybanthus floribundus (Lindl.) F.Mue...
Metal hyperaccumulator plants accumulate and detoxify extraordinarily high concentrations of metal i...
Hyperaccumulator plants are unusual plants that accumulate particular metals or metalloids, such as ...
The extraordinary level of accumulation of nickel (Ni) in hyperaccumulator plants is a consequence o...
Background: Hyperaccumulator plants are unusual plants that accumulate particular metals or metalloi...
Metal hyperaccumulation is a rare and fascinating phenomenon, whereby plants actively accumulate hig...
Globally, the majority of Ni hyperaccumulator plants occur on ultramafic soils in tropical regions, ...
Hyperaccumulator plant species are able to accumulate between 1-5% of their biomass as metal. Howeve...
International audienceWhile an excess of metals such as zinc, cadmium or nickel (Ni) is toxic for mo...
International audienceWorldwide, more than 450 plant species scattered through 40+ families are know...
'Phytoremediation, the use of plants for environmental cleanup of pollutants, including toxic metals...
Hyperaccumulation is generally highly specific for a single element, for example nickel (Ni). The re...
Hyperaccumulation is generally highly specific for a single element, for example nickel (Ni). The re...
Hyperaccumulator plants have the unique ability to concentrate specific elements in their shoot in c...
Abstract: A comparative analysis of nickel (Ni) accumulation by the hyperaccumulator Noccaea japonic...
The mechanisms responsible for nickel (Ni) hyperaccumulation in Hybanthus floribundus (Lindl.) F.Mue...
Metal hyperaccumulator plants accumulate and detoxify extraordinarily high concentrations of metal i...