Gene duplication is a major mechanism facilitating adaptation to changing environments. From recent genomic analyses, the acquisition of zinc hypertolerance and hyperaccumulation characters discriminating Arabidopsis halleri from its zinc sensitive/non-accumulator closest relatives Arabidopsis lyrata and Arabidopsis thaliana was proposed to rely on duplication of genes controlling zinc transport or zinc tolerance. Metal Tolerance Protein 1 (MTP1) is one of these genes. It encodes a Zn2+/H+ antiporter involved in cytoplasmic zinc detoxification and thus in zinc tolerance. MTP1 was proposed to be triplicated in A. halleri, while it is present in single copy in A. thaliana and A. lyrata. Two of the three AhMTP1 paralogues were shown to co-segr...
International audienceCadmium (Cd) tolerance seems to be a constitutive species-level trait in Arabi...
As a drastic environmental change, metal pollution may promote the rapid evolution of genetic adapta...
Zinc and iron are two essential micronutrients for plants. The homeostasis networks of the two metal...
The zinc hyperaccumulator plant Arabidopsis halleri is able to naturally accumulate 100-fold higher ...
In the hyperaccumulator Arabidopsis halleri, the zinc (Zn) vacuolar transporter MTP1 is a key compon...
In the hyperaccumulator Arabidopsis halleri, the zinc (Zn) vacuolar transporter MTP1 is a key compon...
peer reviewedPlants have the ability to colonize highly diverse environments. The zinc and cadmium h...
The species Arabidopsis halleri, an emerging model for the study of heavy metal tolerance and accumu...
A. halleri, est une espèce modèle pour l'étude des mécanismes moléculaires liés à l'évolution des ca...
The plant Arabidopsis halleri exhibits naturally selected metal hypertolerance and extraordinarily h...
A. halleri, est une espèce modèle pour l'étude des mécanismes moléculaires liés à l'évolution des ca...
Arabidopsis halleri ssp. halleri (accession Langelsheim) is a naturally selected zinc (Zn)- and cadm...
The metal hyperaccumulator Arabidopsis halleri exhibits naturally selected zinc (Zn) and cadmium (Cd...
In the hyperaccumulator Arabidopsis halleri, the zinc (Zn) vacuolar transporter MTP1 is a key compon...
The MTP1 protein of Arabidopsis thaliana belongs to a ubiquitous family of transition metal transpor...
International audienceCadmium (Cd) tolerance seems to be a constitutive species-level trait in Arabi...
As a drastic environmental change, metal pollution may promote the rapid evolution of genetic adapta...
Zinc and iron are two essential micronutrients for plants. The homeostasis networks of the two metal...
The zinc hyperaccumulator plant Arabidopsis halleri is able to naturally accumulate 100-fold higher ...
In the hyperaccumulator Arabidopsis halleri, the zinc (Zn) vacuolar transporter MTP1 is a key compon...
In the hyperaccumulator Arabidopsis halleri, the zinc (Zn) vacuolar transporter MTP1 is a key compon...
peer reviewedPlants have the ability to colonize highly diverse environments. The zinc and cadmium h...
The species Arabidopsis halleri, an emerging model for the study of heavy metal tolerance and accumu...
A. halleri, est une espèce modèle pour l'étude des mécanismes moléculaires liés à l'évolution des ca...
The plant Arabidopsis halleri exhibits naturally selected metal hypertolerance and extraordinarily h...
A. halleri, est une espèce modèle pour l'étude des mécanismes moléculaires liés à l'évolution des ca...
Arabidopsis halleri ssp. halleri (accession Langelsheim) is a naturally selected zinc (Zn)- and cadm...
The metal hyperaccumulator Arabidopsis halleri exhibits naturally selected zinc (Zn) and cadmium (Cd...
In the hyperaccumulator Arabidopsis halleri, the zinc (Zn) vacuolar transporter MTP1 is a key compon...
The MTP1 protein of Arabidopsis thaliana belongs to a ubiquitous family of transition metal transpor...
International audienceCadmium (Cd) tolerance seems to be a constitutive species-level trait in Arabi...
As a drastic environmental change, metal pollution may promote the rapid evolution of genetic adapta...
Zinc and iron are two essential micronutrients for plants. The homeostasis networks of the two metal...