Soil salinity is a major problem in agriculture because high accumulation of Na+ ions in plants causes toxicity that can result in yield reduction. Na+/K+ homeostasis is known to be important for salt tolerance in plants. Na+/K+ homeostasis in rice (Oryza sativa L.) involves nine high-affinity K+ transporter (HKT) encoding Na+-K+ symporter, five OsNHX Na+/H+ antiporters, and OsSOS1 Na+/K+ antiporter genes. In the present study, we investigated various molecular and physiological processes to evaluate germination rate, growth pattern, ion content, and expression of OsHKT, OsNHX, and OsSOS1genes related to Na+/K+ homeostasis in different rice genotypes under salt stress. We found a significant increase in the germination percentage, plant vig...
Not AvailableReproductive stage salt tolerance is crucial in rice to guarantee yield under saline co...
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...
Abstract Background Salinization is a primary abiotic stress constraining global plant growth and pr...
Kader MA, Seidel T, Golldack D, Lindberg S. Expressions of OsHKT1, OsHKT2, and OsVHA are differentia...
Rice (Oryza sativa) is a staple food that feeds more than half the world population. As rice is high...
Rice (Oryza sativa) is a staple food that feeds more than half the world population. As rice is high...
Salt tolerance QTL analysis of rice has revealed that the SKC1 locus, which is involved in a higher ...
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...
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...
The high-affinity potassium transporter (HKT) genes are key ions transporters, regulating the plant ...
The world population is growing alarmingly fast and imposes more pressure than ever towards increasi...
Not AvailableReproductive stage salt tolerance is crucial in rice to guarantee yield under saline co...
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...
Abstract Background Salinization is a primary abiotic stress constraining global plant growth and pr...
Kader MA, Seidel T, Golldack D, Lindberg S. Expressions of OsHKT1, OsHKT2, and OsVHA are differentia...
Rice (Oryza sativa) is a staple food that feeds more than half the world population. As rice is high...
Rice (Oryza sativa) is a staple food that feeds more than half the world population. As rice is high...
Salt tolerance QTL analysis of rice has revealed that the SKC1 locus, which is involved in a higher ...
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...
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...
The high-affinity potassium transporter (HKT) genes are key ions transporters, regulating the plant ...
The world population is growing alarmingly fast and imposes more pressure than ever towards increasi...
Not AvailableReproductive stage salt tolerance is crucial in rice to guarantee yield under saline co...
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...