Members of the genus Acinetobacter are well known for their metabolic versatility that allows them to adapt to different ecological niches. In previous studies, we have demonstrated that Acinetobacter baylyi ADP1 can cope with high salinities by uptake and accumulation of the well-known compatible solute glycine betaine. Here, we demonstrate that addition of choline restores growth at high salinities. We further show that choline was actively taken up by the cells and converted to glycine betaine. Uptake of choline was induced by high salinity and the presence of choline in the growth medium. At high salinities, glycine betaine was accumulated in the cells whereas in the absence of osmotic stress it was exported. Inspection of the genome se...
Osmoregulated transporters sense intracellular osmotic pressure and respond to hyperosmotic stress b...
Osmoregulated transporters sense intracellular osmotic pressure and respond to hyperosmotic stress b...
Osmoregulated transporters sense intracellular osmotic pressure and respond to hyperosmotic stress b...
Acinetobacter baumannii is outstanding for its ability to cope with low water activities and therefo...
Increases in the environmental osmolarity are key determinants for the growth of microorganisms. To ...
The plant pathogen Pseudomonas syringae derives better osmoprotection from choline than from glycine...
P>Increases in the environmental osmolarity are key determinants for the growth of microorganisms. T...
Acinetobacter baumannii is outstanding for its ability to cope with low water activities which signi...
Acinetobacter baumannii is outstanding for its ability to cope with low water activities which signi...
Acinetobacter baumannii is outstanding for its ability to cope with low water activities which signi...
Transport processes across the membrane are essential to ensure survival of every living cell. There...
Osmoregulated transporters sense intracellular osmotic pressure and respond to hyperosmotic stress b...
Pseudomonas aeruginosa uses the quaternary amine choline as a carbon source, osmoprotectant, and mac...
Osmoregulated transporters sense intracellular osmotic pressure and respond to hyperosmotic stress b...
Osmoregulated transporters sense intracellular osmotic pressure and respond to hyperosmotic stress b...
Osmoregulated transporters sense intracellular osmotic pressure and respond to hyperosmotic stress b...
Osmoregulated transporters sense intracellular osmotic pressure and respond to hyperosmotic stress b...
Osmoregulated transporters sense intracellular osmotic pressure and respond to hyperosmotic stress b...
Acinetobacter baumannii is outstanding for its ability to cope with low water activities and therefo...
Increases in the environmental osmolarity are key determinants for the growth of microorganisms. To ...
The plant pathogen Pseudomonas syringae derives better osmoprotection from choline than from glycine...
P>Increases in the environmental osmolarity are key determinants for the growth of microorganisms. T...
Acinetobacter baumannii is outstanding for its ability to cope with low water activities which signi...
Acinetobacter baumannii is outstanding for its ability to cope with low water activities which signi...
Acinetobacter baumannii is outstanding for its ability to cope with low water activities which signi...
Transport processes across the membrane are essential to ensure survival of every living cell. There...
Osmoregulated transporters sense intracellular osmotic pressure and respond to hyperosmotic stress b...
Pseudomonas aeruginosa uses the quaternary amine choline as a carbon source, osmoprotectant, and mac...
Osmoregulated transporters sense intracellular osmotic pressure and respond to hyperosmotic stress b...
Osmoregulated transporters sense intracellular osmotic pressure and respond to hyperosmotic stress b...
Osmoregulated transporters sense intracellular osmotic pressure and respond to hyperosmotic stress b...
Osmoregulated transporters sense intracellular osmotic pressure and respond to hyperosmotic stress b...
Osmoregulated transporters sense intracellular osmotic pressure and respond to hyperosmotic stress b...