Salt tolerance QTL analysis of rice has revealed that the SKC1 locus, which is involved in a higher K(+) /Na(+) ratio in shoots, corresponds to the OsHKT1;5 gene encoding a Na(+) -selective transporter. However, physiological roles of OsHKT1;5 in rice exposed to salt stress remain elusive and no OsHKT1;5 gene disruption mutants have been characterized to date. In this study, we dissected two independent T-DNA insertional OsHKT1;5 mutants. Measurements of ion contents in tissues and (22) Na(+) tracer imaging experiments showed that loss-of-function of OsHKT1;5 in salt-stressed rice roots triggers massive Na(+) accumulation in shoots. Salt stress-induced increases in the OsHKT1;5 transcript was observed in roots and basal stems including basa...
Excessive accumulation of sodium in plants causes toxicity. No mutation that greatly diminishes sodi...
Background: Na+ exclusion from leaf blades is one of the key mechanisms for glycophytes to cope with...
The high affinity K+ transporter 1;4 (HKT1;4) in rice (Oryza sativa), which shows Na+ selective tran...
Salt tolerance quantitative trait loci analysis of rice has revealed that the SKC1 locus, which is i...
Salt tolerance quantitative trait loci analysis of rice has revealed that the SKC1 locus, which is i...
Salt tolerance quantitative trait loci analysis of rice has revealed that the SKC1 locus, which is i...
BackgroundNa(+) exclusion from leaf blades is one of the key mechanisms for glycophytes to cope with...
BackgroundNa(+) exclusion from leaf blades is one of the key mechanisms for glycophytes to cope with...
BackgroundNa(+) exclusion from leaf blades is one of the key mechanisms for glycophytes to cope with...
The high affinity K+ transporter 1;4 (HKT1;4) in rice (Oryza sativa), which shows Na+ selective tran...
The high affinity K+ transporter 1;4 (HKT1;4) in rice (Oryza sativa), which shows Na+ selective tran...
HKT Na+ transporters correspond to major salt tolerance QTLs in different plant species and are targ...
In rice, the OsHKT1;5 gene has been reported to be a critical determinant of salt tolerance. This ge...
In rice, the OsHKT1;5 gene has been reported to be a critical determinant of salt tolerance. This ge...
In rice, the OsHKT1;5 gene has been reported to be a critical determinant of salt tolerance. This ge...
Excessive accumulation of sodium in plants causes toxicity. No mutation that greatly diminishes sodi...
Background: Na+ exclusion from leaf blades is one of the key mechanisms for glycophytes to cope with...
The high affinity K+ transporter 1;4 (HKT1;4) in rice (Oryza sativa), which shows Na+ selective tran...
Salt tolerance quantitative trait loci analysis of rice has revealed that the SKC1 locus, which is i...
Salt tolerance quantitative trait loci analysis of rice has revealed that the SKC1 locus, which is i...
Salt tolerance quantitative trait loci analysis of rice has revealed that the SKC1 locus, which is i...
BackgroundNa(+) exclusion from leaf blades is one of the key mechanisms for glycophytes to cope with...
BackgroundNa(+) exclusion from leaf blades is one of the key mechanisms for glycophytes to cope with...
BackgroundNa(+) exclusion from leaf blades is one of the key mechanisms for glycophytes to cope with...
The high affinity K+ transporter 1;4 (HKT1;4) in rice (Oryza sativa), which shows Na+ selective tran...
The high affinity K+ transporter 1;4 (HKT1;4) in rice (Oryza sativa), which shows Na+ selective tran...
HKT Na+ transporters correspond to major salt tolerance QTLs in different plant species and are targ...
In rice, the OsHKT1;5 gene has been reported to be a critical determinant of salt tolerance. This ge...
In rice, the OsHKT1;5 gene has been reported to be a critical determinant of salt tolerance. This ge...
In rice, the OsHKT1;5 gene has been reported to be a critical determinant of salt tolerance. This ge...
Excessive accumulation of sodium in plants causes toxicity. No mutation that greatly diminishes sodi...
Background: Na+ exclusion from leaf blades is one of the key mechanisms for glycophytes to cope with...
The high affinity K+ transporter 1;4 (HKT1;4) in rice (Oryza sativa), which shows Na+ selective tran...