Abstract
Streptococcus mutans Ingbritt was grown in a chemostat at defined dilution rates and pH values and under carbohydrate limitation. At a constant dilution rate of D = 0.1 h-1 and with either 0.5% glucose or 0.5% sucrose, the amounts of both cellular and extracellular lipoteichoic acid increased as the culture pH increased from 5.0 to 7.5. At a constant pH of 6.0, the amount of cellular lipoteichoic acid formed by cultures growing in 0.2% or 0.5% glucose was relatively constant over a range of dilution rates, although the amount of extracellular lipoteichoic acid formed in 0.2% glucose at intermediate dilution rates was less than that formed in 0.5% glucose. Organisms grown in 0.5% sucrose at pH 6.0 contained increasing amounts of cellular lipoteichoic acid as the dilution rate was increased. A comparison of the amounts of cellular lipoteichoic acid formed by organisms growing at D = 0.5 h-1 and pH 6.0 in glucose, sucrose, fructose, or mixtures of glucose and fructose in limiting amounts suggested that the enhanced production of lipoteichoic acic by sucrose-grown organisms was due to the fructose component. The culture fluids from both glucose- and sucrose-grown organisms contained detectable amounts of serotype c antigen, whereas glucose-grown cultures also contained significant amounts of an extracellular hexose-containing polymer.
MeSH Terms
Animals
Antigens, Bacterial/analysis
Carbohydrate Metabolism
Culture Media
Glucose/pharmacology
Hemagglutination Tests
Hydrogen-Ion Concentration
Immunoelectrophoresis
Lipopolysaccharides
Phosphatidic Acids/biosynthesis
Rabbits
Streptococcus mutans/growth & development,immunology,metabolism
Sucrose/pharmacology
Teichoic Acids/analysis,biosynthesis
Chemicals
Antigens, Bacterial
Culture Media
Lipopolysaccharides
Phosphatidic Acids
Teichoic Acids
lipoteichoic acid
Sucrose
Glucose
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Jacques N A
Hardy L
Campbell L K
Knox K W
Evans J D
Wicken A J
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