FEMS Microbiology Letters · 2003 · 21 citations · 21 references
Lipid PeroxidationEnzymatic ModificationRedox BiologyOxidative StressBiosynthesisEfficient OsmoprotectantsGlycine BetaineBiotransformationOsmotic StressBiochemistryZwf ExpressionReactive Oxygen SpecieBiologyReductive StressGlucose 6-Phosphate DehydrogenaseMetabolic PathwaysNatural SciencesPhysiologyBiotechnologyMicrobiologyMetabolismMedicineZwf Gene
Inactivation of the zwf gene in Sinorhizobium meliloti induces an osmosensitive phenotype and the loss of osmoprotection by trehalose and sucrose, but not by ectoine and glycine betaine. This phenotype is not linked to a defect in the biosynthesis of endogenous solutes. zwf expression is induced by high osmolarity, sucrose and trehalose, but is repressed by betaine. A zwf mutant is more sensitive than its parental strain to superoxide ions, suggesting that glucose 6-phosphate dehydrogenase involvement in the osmotic response most likely results from the production of reactive oxygen species during osmotic stress.
21
Cold Spring Harbor Laboratory; Cold Spring Harbor, NY
T. Cavalier-Smith · FEBS Letters · 1980 · 6.3K citations · Full text
Laboratory Automation, Instrumentation, Cold Spring Harbor +2
The Composite Genome of the Legume Symbiont <i>Sinorhizobium meliloti</i>
Francis Galibert, Turlough M. Finan, Sharon R. Long et al. · Science · 2001 · 1.2K citations
General transduction in Rhizobium meliloti
Turlough M. Finan, E Hartweig, Karine Lemieux et al. · Journal of Bacteriology · 1984 · 274 citations · Full text