Arabidopsis thaliana high-affinity potassium transporter 1 (AtHKT1) limits the root-to-shoot sodium transportation and is believed to be essential for salt tolerance in A. thaliana. Nevertheless, natural accessions with 'weak allele' of AtHKT1, e.g. Tsu-1, are mainly distributed in saline areas and are more tolerant to salinity. These findings challenge the role of AtHKT1 in salt tolerance and call into question the involvement of AtHKT1 in salinity adaptation in A. thaliana. Here, we report that AtHKT1 indeed drives natural variation in the salt tolerance of A. thaliana and the coastal AtHKT1, so-called weak allele, is actually hyper-functional in reducing flowers sodium content upon salt stress. Our data showed that AtHKT1 positively cont...
Salinity tolerance can be attributed to three different mechanisms: Na+ exclusion from the shoot, Na...
The genetic model plant Arabidopsis thaliana, like many plant species, experiences a range of edaphi...
Soil salinity is a major abiotic stress, reducing crop yields and endangering global food security. ...
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...
Producing adequate food supplies in spite of an ever-increasing world population will continue to be...
<div><p>Plants are exposed to various environmental stresses during their life cycle such as salt, d...
Sodium (Na+) is toxic to most plants, but the molecular mechanisms of plant Na+ uptake and distribut...
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 employ several strategies to maintain cellular ion homeostasis under salinity stress, includi...
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...
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...
Salinity tolerance can be attributed to three different mechanisms: Na+ exclusion from the shoot, Na...
The genetic model plant Arabidopsis thaliana, like many plant species, experiences a range of edaphi...
Soil salinity is a major abiotic stress, reducing crop yields and endangering global food security. ...
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...
Producing adequate food supplies in spite of an ever-increasing world population will continue to be...
<div><p>Plants are exposed to various environmental stresses during their life cycle such as salt, d...
Sodium (Na+) is toxic to most plants, but the molecular mechanisms of plant Na+ uptake and distribut...
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 employ several strategies to maintain cellular ion homeostasis under salinity stress, includi...
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...
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...
Salinity tolerance can be attributed to three different mechanisms: Na+ exclusion from the shoot, Na...
The genetic model plant Arabidopsis thaliana, like many plant species, experiences a range of edaphi...
Soil salinity is a major abiotic stress, reducing crop yields and endangering global food security. ...