T-DNA-tagged rice plants were screened under cold- or salt-stress conditions to determine the genes involved in the molecular mechanism for their abiotic-stress response. Line 0-165-65 was identified as a salt-responsive line. The gene responsible for this GUS-positive phenotype was revealed by inverse PCR as OsGSK1 ((O) under bar ryza (s) under bar ativa (g) under bar lycogen (s) under bar ynthase (k) under bar inase3-like gene 1), a member of the plant GSK3/SHAGGY-like protein kinase genes and an orthologue of the Arabidopsis (b) under bar rassinosteroid i (n) under bar sensitive 2 (BIN2), AtSK21. Northern blot analysis showed that OsGSK1 was most highly detected in the developing panicles, suggesting that its expression is developmental ...
Abstract Background The sucrose non-fermenting-1-related protein kinase 2 family (SnRK2s) unifies di...
To better understand the mechanisms of plant abiotic stress responses and identify novel stress-rela...
Plants adapt to adverse environmental conditions through physiological responses, such as induction ...
Abiotic stresses may seriously affect plant growth and development. In order to explore new stress t...
<p>Abiotic stresses may seriously affect plant growth and development. In order to explore new stres...
Low temperature, drought and soil salinity are common adverse environmental conditions determining g...
All plants sense and adapt to adverse environmental conditions, however, crop plants exhibit less ge...
Rice (Oryza sativa L.) is very sensitive to soil salinity. To identify endogenous mechanisms that ma...
All plants sense and adapt to adverse environmental conditions, however, crop plants exhibit less ge...
Soil salinity is an environmental threat limiting rice productivity. Identification of salinity tole...
We isolated a rice T-DNA tagging line, in which T-DNA was inserted into the sixth intron of OsP5CS2....
Drought and salt stresses, the major environmental abiotic stresses in agriculture worldwide, affect...
Sumoylation is one of the post translational modifications, which affects cellular processes in plan...
Signaling components such as mitogen-activated protein kinases (MAPKs) regulate stress-induced pathw...
Plants adapt to adverse environmental conditions through physiological responses, such as induction ...
Abstract Background The sucrose non-fermenting-1-related protein kinase 2 family (SnRK2s) unifies di...
To better understand the mechanisms of plant abiotic stress responses and identify novel stress-rela...
Plants adapt to adverse environmental conditions through physiological responses, such as induction ...
Abiotic stresses may seriously affect plant growth and development. In order to explore new stress t...
<p>Abiotic stresses may seriously affect plant growth and development. In order to explore new stres...
Low temperature, drought and soil salinity are common adverse environmental conditions determining g...
All plants sense and adapt to adverse environmental conditions, however, crop plants exhibit less ge...
Rice (Oryza sativa L.) is very sensitive to soil salinity. To identify endogenous mechanisms that ma...
All plants sense and adapt to adverse environmental conditions, however, crop plants exhibit less ge...
Soil salinity is an environmental threat limiting rice productivity. Identification of salinity tole...
We isolated a rice T-DNA tagging line, in which T-DNA was inserted into the sixth intron of OsP5CS2....
Drought and salt stresses, the major environmental abiotic stresses in agriculture worldwide, affect...
Sumoylation is one of the post translational modifications, which affects cellular processes in plan...
Signaling components such as mitogen-activated protein kinases (MAPKs) regulate stress-induced pathw...
Plants adapt to adverse environmental conditions through physiological responses, such as induction ...
Abstract Background The sucrose non-fermenting-1-related protein kinase 2 family (SnRK2s) unifies di...
To better understand the mechanisms of plant abiotic stress responses and identify novel stress-rela...
Plants adapt to adverse environmental conditions through physiological responses, such as induction ...