The effect of Ca2+ channel blockers on cytosolic Ca2+ levels and the role of Ca2+ in glycerol metabolism of Dunaliella salina under hypoosmotic or hyperosmotic stress were investigated using the confocal laser scanning microscope (CLSM). Results showed that intracellular Ca2+ concentration increased rapidly when extracellular salinity suddenly decreased or increased, but the increase could be inhibited by pretreatment of Ca2+ channel blockers LaCl3, verapamil or ruthenium red. The changes of glycerol content and G3pdh activity in D. salina to respect to hypoosmotic or hyperosmotic stress were also inhibited in different degrees by pretreatment of Ca2+ channel blockers, indicating that the influx of Ca2+ via Ca2+ channels are required for th...
Two strains of Dunaliella, one halotolerant and one halophilic, were grown in batch culture at NaCl ...
Changes in the cytosolic Ca2+ levels and the role of Ca2+ signal transduction in neutral lipid synth...
Forster C, Marienfeld S, Wendisch VF, Kramer R. Adaptation of the filamentous fungus Ashbya gossypii...
The glycerol metabolic pathway is a special cycle way; glycerol-3-phosphate dehydrogenase (G3pdh), g...
Cells of Dunaliella acidophila, an acidophilic and halotolerant green alga, which can grow at pH as ...
Abstract: To investigate the mechanism of extracellular Ca2+ in alleviating salt stress, the effect...
Dunaliella tertiolecta accumulated glycerol at a rate of 200 fmol per cell h−l, when subjected to a ...
The cells of marine and halotolerant eukaryotic algae can achieve osmotic balance by ion accumu-lati...
Salinity is among the environmental factors that affect plant growth and development and constrain a...
<p>A: Hypoosmotic stress; B: Hyperosmotic stress. Columns represent the means of three replicated st...
The ultrastructural changes taking place in Dunaliella bioculata after chronic exposure to a sodium ...
Osmotic stress rapidly activates several phospholipid signalling pathways in the unicellular alga Ch...
Changes in the cytosolic Ca2+ levels and the role of Ca2+ signal transduction in neutral lipid synth...
Salinity imposes significant stresses in various living organisms including microalgae. High extrace...
Dunaliella salina is a well known object model of biotech research, and the latest publications allo...
Two strains of Dunaliella, one halotolerant and one halophilic, were grown in batch culture at NaCl ...
Changes in the cytosolic Ca2+ levels and the role of Ca2+ signal transduction in neutral lipid synth...
Forster C, Marienfeld S, Wendisch VF, Kramer R. Adaptation of the filamentous fungus Ashbya gossypii...
The glycerol metabolic pathway is a special cycle way; glycerol-3-phosphate dehydrogenase (G3pdh), g...
Cells of Dunaliella acidophila, an acidophilic and halotolerant green alga, which can grow at pH as ...
Abstract: To investigate the mechanism of extracellular Ca2+ in alleviating salt stress, the effect...
Dunaliella tertiolecta accumulated glycerol at a rate of 200 fmol per cell h−l, when subjected to a ...
The cells of marine and halotolerant eukaryotic algae can achieve osmotic balance by ion accumu-lati...
Salinity is among the environmental factors that affect plant growth and development and constrain a...
<p>A: Hypoosmotic stress; B: Hyperosmotic stress. Columns represent the means of three replicated st...
The ultrastructural changes taking place in Dunaliella bioculata after chronic exposure to a sodium ...
Osmotic stress rapidly activates several phospholipid signalling pathways in the unicellular alga Ch...
Changes in the cytosolic Ca2+ levels and the role of Ca2+ signal transduction in neutral lipid synth...
Salinity imposes significant stresses in various living organisms including microalgae. High extrace...
Dunaliella salina is a well known object model of biotech research, and the latest publications allo...
Two strains of Dunaliella, one halotolerant and one halophilic, were grown in batch culture at NaCl ...
Changes in the cytosolic Ca2+ levels and the role of Ca2+ signal transduction in neutral lipid synth...
Forster C, Marienfeld S, Wendisch VF, Kramer R. Adaptation of the filamentous fungus Ashbya gossypii...