AbstractHst1At (accession number AB018695) was identified from the Arabidopsis thaliana sequencing project on BAC T3F12, and the corresponding cDNA was isolated by reverse transcription-PCR. Southern blot analysis reveals a single copy of this gene. The cDNA encodes a root specific sulfate transporter of 649 amino acids. Heterologous expression of hst1At in a sulfate transport deficient yeast mutant shows that this gene encodes a high-affinity transport system (∼2 μM). The transcript relative abundance increases in roots in response to sulfate deprivation, which correlated with increased root SO42− influx capacity. These patterns were reversed upon sulfate addition to the medium and were accompanied by an increased glutathione level in root...
International audienceDrought and salinity are two frequently combined abiotic stresses that affect ...
International audienceIn Arabidopsis, SULTR1;1 and SULTR1;2 are two genes proposed to be involved in...
Cadmium (Cd) exposure and sulfate limitation induce root sulfate uptake to meet the metabolic demand...
AbstractHst1At (accession number AB018695) was identified from the Arabidopsis thaliana sequencing p...
Proton/sulfate cotransporters in the plasma membranes are responsible for uptake of the environmenta...
To investigate the uptake and long-distance translocation of sulphate in plants, we have characteriz...
AbstractA cDNA encoding a sulfate transporter was isolated from Arabidopsis thaliana. The isolated c...
The molecular mechanisms regulating the initial uptake of inorganic sulfate in plants are still larg...
The molecular mechanisms regulating the initial uptake of inorganic sulfate in plants are still larg...
The molecular mechanisms regulating the initial uptake of inorganic sulfate in plants are still larg...
A high-affinity-type sulfate transporter (Group 1: ZmST1;1, Accession No. AF355602) has been cloned ...
Root hairs often contribute to nutrient uptake from environments, but the contribution varies among ...
Three plant sulfate transporter cDNAs have been isolated by complementation of a yeast mutant with a...
Sulfur, one of six macronutrients required by plants, is the rudimental component of cysteine, methi...
ZmST1;1, a putative high-affinity sulfate transporter gene expressed in maize (Zea mays) roots, was ...
International audienceDrought and salinity are two frequently combined abiotic stresses that affect ...
International audienceIn Arabidopsis, SULTR1;1 and SULTR1;2 are two genes proposed to be involved in...
Cadmium (Cd) exposure and sulfate limitation induce root sulfate uptake to meet the metabolic demand...
AbstractHst1At (accession number AB018695) was identified from the Arabidopsis thaliana sequencing p...
Proton/sulfate cotransporters in the plasma membranes are responsible for uptake of the environmenta...
To investigate the uptake and long-distance translocation of sulphate in plants, we have characteriz...
AbstractA cDNA encoding a sulfate transporter was isolated from Arabidopsis thaliana. The isolated c...
The molecular mechanisms regulating the initial uptake of inorganic sulfate in plants are still larg...
The molecular mechanisms regulating the initial uptake of inorganic sulfate in plants are still larg...
The molecular mechanisms regulating the initial uptake of inorganic sulfate in plants are still larg...
A high-affinity-type sulfate transporter (Group 1: ZmST1;1, Accession No. AF355602) has been cloned ...
Root hairs often contribute to nutrient uptake from environments, but the contribution varies among ...
Three plant sulfate transporter cDNAs have been isolated by complementation of a yeast mutant with a...
Sulfur, one of six macronutrients required by plants, is the rudimental component of cysteine, methi...
ZmST1;1, a putative high-affinity sulfate transporter gene expressed in maize (Zea mays) roots, was ...
International audienceDrought and salinity are two frequently combined abiotic stresses that affect ...
International audienceIn Arabidopsis, SULTR1;1 and SULTR1;2 are two genes proposed to be involved in...
Cadmium (Cd) exposure and sulfate limitation induce root sulfate uptake to meet the metabolic demand...