Plants employ several strategies to maintain cellular ion homeostasis under salinity stress, including mediating ion fluxes by transmembrane transport proteins and adjusting osmotic pressure by accumulating osmolytes. The HKT (high-affinity potassium transporter) gene family comprises Na+ and Na+/K+ transporters in diverse plant species, with HKT1;1 as the only member in Arabidopsis thaliana. Cell-type-specific overexpression of AtHKT1;1 has been shown to prevent shoot Na+ overaccumulation under salinity stress. Here, we analyzed a broad range of metabolites and elements in shoots and roots of different AtHKT1;1 genotypes and their parental strains before and after salinity stress, revealing a reciprocal relationship of metabolite differenc...
Arid/semi-arid and coastal agricultural areas of the world are especially vulnerable to climate chan...
Arid/semi-arid and coastal agricultural areas of the world are especially vulnerable to climate chan...
Abiotic stresses generally cause a series of morphological, biochemical and molecular changes that u...
Plants employ several strategies to maintain cellular ion homeostasis under salinity stress, includi...
HKT1 and SOS1 are two key Na+ transporters that modulate salt tolerance in plants. Although much is ...
Plants are exposed to various environmental stresses during their life cycle such as salt, drought a...
Plants are exposed to various environmental stresses during their life cycle such as salt, drought a...
Sodium (Na+) is toxic to most plants, but the molecular mechanisms of plant Na+ uptake and distribut...
Abiotic stresses generally cause a series of morphological, biochemical and molecular changes that u...
Soil salinity is a major abiotic stress, reducing crop yields and endangering global food security. ...
Arabidopsis thaliana high-affinity potassium transporter 1 (AtHKT1) limits the root-to-shoot sodium ...
Arid/semi-arid and coastal agricultural areas of the world are especially vulnerable to climate chan...
Arid/semi-arid and coastal agricultural areas of the world are especially vulnerable to climate chan...
Cellular Na +/K + ratio is a crucial parameter determining plant salinity stress resistance. We test...
Salinity is a major abiotic stress influencing agricultural production in Australia and around the w...
Arid/semi-arid and coastal agricultural areas of the world are especially vulnerable to climate chan...
Arid/semi-arid and coastal agricultural areas of the world are especially vulnerable to climate chan...
Abiotic stresses generally cause a series of morphological, biochemical and molecular changes that u...
Plants employ several strategies to maintain cellular ion homeostasis under salinity stress, includi...
HKT1 and SOS1 are two key Na+ transporters that modulate salt tolerance in plants. Although much is ...
Plants are exposed to various environmental stresses during their life cycle such as salt, drought a...
Plants are exposed to various environmental stresses during their life cycle such as salt, drought a...
Sodium (Na+) is toxic to most plants, but the molecular mechanisms of plant Na+ uptake and distribut...
Abiotic stresses generally cause a series of morphological, biochemical and molecular changes that u...
Soil salinity is a major abiotic stress, reducing crop yields and endangering global food security. ...
Arabidopsis thaliana high-affinity potassium transporter 1 (AtHKT1) limits the root-to-shoot sodium ...
Arid/semi-arid and coastal agricultural areas of the world are especially vulnerable to climate chan...
Arid/semi-arid and coastal agricultural areas of the world are especially vulnerable to climate chan...
Cellular Na +/K + ratio is a crucial parameter determining plant salinity stress resistance. We test...
Salinity is a major abiotic stress influencing agricultural production in Australia and around the w...
Arid/semi-arid and coastal agricultural areas of the world are especially vulnerable to climate chan...
Arid/semi-arid and coastal agricultural areas of the world are especially vulnerable to climate chan...
Abiotic stresses generally cause a series of morphological, biochemical and molecular changes that u...