On the basis of our previous field survey, we postulate that the pattern and degree of zinc (Zn) isotope fractionation in the Zn hyperaccumulator Noccaea caerulescens (J. & C. Presl) F. K. Mey may reflect a relationship between Zn bioavailability and plant uptake strategies. Here, we investigated Zn isotope discrimination during Zn uptake and translocation in N. caerulescens and in a nonaccumulator Thlaspi arvense L. with a contrasting Zn accumulation ability in response to low (Zn-L) and high (Zn-H) Zn supplies. The average isotope fractionations of the N. caerulescens plant as a whole, relative to solution (Δ(66)Znplant-solution), were -0.06 and -0.12‰ at Zn-L-C and Zn-H-C, respectively, indicative of the predominance of a high-affinity (...
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...
<div><p>Stable Zn isotopes are fractionated in roots and leaves of plants. Analyses demonstrate that...
On the basis of our previous field survey, we postulate that the pattern and degree of zinc (Zn) iso...
On the basis of our previous field survey, we postulate that the pattern and degree of zinc (Zn) iso...
International audienceZn isotope fractionation may provide new insights into Zn uptake, transport an...
Stable Zn isotope signatures offer a potential tool for tracing Zn uptake and transfer mechanisms wi...
Aims Recent advances in mass spectrometry have demonstrated that higher plants discriminate stable Z...
International audienceUntil now, there has been little data on the isotope fractionation of nickel (...
Aims: Phytosiderophore-chelated Zn can be absorbed in grasses. Root exudates of dicotyledonous plant...
Stable Zn isotopes are increasingly used to trace the source of metal pollution in the environment a...
Stable isotope signature of Zn have shown great promise in elucidating changes in uptake and translo...
Until now, there has been little data on the isotope fractionation of nickel (Ni) in higher plants a...
Stable zinc (Zn) isotope fractionation between soil and plant has been used to suggest the mechanism...
Stable Zn isotopes are increasingly used to trace the source of metal pollution in the environment a...
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...
<div><p>Stable Zn isotopes are fractionated in roots and leaves of plants. Analyses demonstrate that...
On the basis of our previous field survey, we postulate that the pattern and degree of zinc (Zn) iso...
On the basis of our previous field survey, we postulate that the pattern and degree of zinc (Zn) iso...
International audienceZn isotope fractionation may provide new insights into Zn uptake, transport an...
Stable Zn isotope signatures offer a potential tool for tracing Zn uptake and transfer mechanisms wi...
Aims Recent advances in mass spectrometry have demonstrated that higher plants discriminate stable Z...
International audienceUntil now, there has been little data on the isotope fractionation of nickel (...
Aims: Phytosiderophore-chelated Zn can be absorbed in grasses. Root exudates of dicotyledonous plant...
Stable Zn isotopes are increasingly used to trace the source of metal pollution in the environment a...
Stable isotope signature of Zn have shown great promise in elucidating changes in uptake and translo...
Until now, there has been little data on the isotope fractionation of nickel (Ni) in higher plants a...
Stable zinc (Zn) isotope fractionation between soil and plant has been used to suggest the mechanism...
Stable Zn isotopes are increasingly used to trace the source of metal pollution in the environment a...
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...
<div><p>Stable Zn isotopes are fractionated in roots and leaves of plants. Analyses demonstrate that...