Recent reports suggest that significant fractionation of stable metal isotopes occurs during biogeochemical cycling and that the uptake into higher plants is an important process. To test isotopic fractionation of copper (Cu) and zinc (Zn) during plant uptake and constrain its controls, we grew lettuce, tomato, rice and durum wheat under controlled conditions in nutrient solutions with variable metal speciation and iron (Fe) supply. The results show that the fractionation patterns of these two micronutrients are decoupled during the transport from nutrient solution to root. In roots, we found an enrichment of the heavier isotopes for Zn, in agreement with previous studies, but an enrichment of isotopically light Cu, suggesting a reduction o...
International audienceZn isotope fractionation may provide new insights into Zn uptake, transport an...
The extent of isotopic discrimination of transition metals in biological processes is poorly underst...
Stable isotope fractionation is emerging quickly as a powerful novel technique to study metal uptake...
Recent reports suggest that significant fractionation of stable metal isotopes occurs during biogeoc...
Recent reports suggest that significant fractionation of stable metal isotopes occurs during biogeoc...
THE fractionation of stable copper (Cu) isotopes during uptake into plant roots and translocation to...
International audienceKnowledge of the copper cycle in the plant-soil-water system is needed in orde...
Aims Recent advances in mass spectrometry have demonstrated that higher plants discriminate stable Z...
Copper (Cu) is an essential micronutrient for plants and many microorganisms, playing a key role in ...
International audienceThis work critically reviews stable isotope fractionation of essential (B, Mg,...
Copper has two naturally occurring stable isotopes of masses 63 and 65 which can undergo mass depend...
Biogeochemical cycles of Cu and Zn are deeply influenced by anthropogenic activities, modifying thei...
Aims: Phytosiderophore-chelated Zn can be absorbed in grasses. Root exudates of dicotyledonous plant...
International audienceUntil now, there has been little data on the isotope fractionation of nickel (...
This work critically reviews stable isotope fractionation of essential (B, Mg, K, Ca, Fe, Ni, Cu, Zn...
International audienceZn isotope fractionation may provide new insights into Zn uptake, transport an...
The extent of isotopic discrimination of transition metals in biological processes is poorly underst...
Stable isotope fractionation is emerging quickly as a powerful novel technique to study metal uptake...
Recent reports suggest that significant fractionation of stable metal isotopes occurs during biogeoc...
Recent reports suggest that significant fractionation of stable metal isotopes occurs during biogeoc...
THE fractionation of stable copper (Cu) isotopes during uptake into plant roots and translocation to...
International audienceKnowledge of the copper cycle in the plant-soil-water system is needed in orde...
Aims Recent advances in mass spectrometry have demonstrated that higher plants discriminate stable Z...
Copper (Cu) is an essential micronutrient for plants and many microorganisms, playing a key role in ...
International audienceThis work critically reviews stable isotope fractionation of essential (B, Mg,...
Copper has two naturally occurring stable isotopes of masses 63 and 65 which can undergo mass depend...
Biogeochemical cycles of Cu and Zn are deeply influenced by anthropogenic activities, modifying thei...
Aims: Phytosiderophore-chelated Zn can be absorbed in grasses. Root exudates of dicotyledonous plant...
International audienceUntil now, there has been little data on the isotope fractionation of nickel (...
This work critically reviews stable isotope fractionation of essential (B, Mg, K, Ca, Fe, Ni, Cu, Zn...
International audienceZn isotope fractionation may provide new insights into Zn uptake, transport an...
The extent of isotopic discrimination of transition metals in biological processes is poorly underst...
Stable isotope fractionation is emerging quickly as a powerful novel technique to study metal uptake...