The green microalga genus Dunaliella is mostly comprised of species that exhibit a wide range of salinity tolerance, including inhabitants of hyperhaline reservoirs. Na+ content in Dunaliella cells inhabiting saline environments is maintained at a fairly low level, comparable to that in the cells of freshwater organisms. However, despite a long history of studying the physiological and molecular mechanisms that ensure the ability of halotolerant Dunaliella species to survive at high concentrations of NaCl, the question of how Dunaliella cells remove excess Na+ ions entering from the environment is still debatable. For thermodynamic reasons it should be a primary active mechanism; for example, via a Na+-transporting ATPase, but the molecular...
AbstractThe ATP-supported 22NA+ uptake by plasma membrane vesicles from the marine microalga, Platym...
The halotolerant alga Dunaliella salina is a recognized model photosynthetic organism for studying p...
The tonoplast Na+/H+ antiporter and tonoplast H+ pumps are essential components of salt tolerance in...
AbstractThe hypothesis that the primary Na+-pump, Na+-ATPase, functions in the plasma membrane (PM) ...
AbstractThe halotolerant alga Dunaliella adapts to exceptionally high salinity and maintains low [Na...
The V-ATPase subunit A participates in vacuolar Na (+) compartmentalization in Salicornia europaea r...
Life in high salinity environments poses challenges to cells in a variety of ways: maintenance of io...
Studying how freshwater cells modify metabolism and membrane lipids in response to salt stress is im...
Generation of ion electrochemical potential differences by primary active transport can involve ener...
The unicellular green halotolerant microalga Dunaliella maritima grown in medium containing 500 mM N...
AbstractPlasma membrane vesicles isolated from the halotolerant alga Dunaliella salina catalyze Na+/...
The aim of this work was to understand the mechanisms of Na+ accumulation in the halophyte Mesembrya...
AbstractSodium accumulation by the Na+-ATPase in the plasma membrane (PM) vesicles isolated from the...
Generation of ion electrochemical potential differences by primary active transport can involve ener...
Salinity imposes significant stresses in various living organisms including microalgae. High extrace...
AbstractThe ATP-supported 22NA+ uptake by plasma membrane vesicles from the marine microalga, Platym...
The halotolerant alga Dunaliella salina is a recognized model photosynthetic organism for studying p...
The tonoplast Na+/H+ antiporter and tonoplast H+ pumps are essential components of salt tolerance in...
AbstractThe hypothesis that the primary Na+-pump, Na+-ATPase, functions in the plasma membrane (PM) ...
AbstractThe halotolerant alga Dunaliella adapts to exceptionally high salinity and maintains low [Na...
The V-ATPase subunit A participates in vacuolar Na (+) compartmentalization in Salicornia europaea r...
Life in high salinity environments poses challenges to cells in a variety of ways: maintenance of io...
Studying how freshwater cells modify metabolism and membrane lipids in response to salt stress is im...
Generation of ion electrochemical potential differences by primary active transport can involve ener...
The unicellular green halotolerant microalga Dunaliella maritima grown in medium containing 500 mM N...
AbstractPlasma membrane vesicles isolated from the halotolerant alga Dunaliella salina catalyze Na+/...
The aim of this work was to understand the mechanisms of Na+ accumulation in the halophyte Mesembrya...
AbstractSodium accumulation by the Na+-ATPase in the plasma membrane (PM) vesicles isolated from the...
Generation of ion electrochemical potential differences by primary active transport can involve ener...
Salinity imposes significant stresses in various living organisms including microalgae. High extrace...
AbstractThe ATP-supported 22NA+ uptake by plasma membrane vesicles from the marine microalga, Platym...
The halotolerant alga Dunaliella salina is a recognized model photosynthetic organism for studying p...
The tonoplast Na+/H+ antiporter and tonoplast H+ pumps are essential components of salt tolerance in...