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  • 1
    ISSN: 1432-072X
    Keywords: Molar growth yields ; Thermoacidophile ; Respiratory chain energy conservation ; Membrane permeability ; Temperature and pH ; Bacillus acidocaldarius
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology
    Notes: Abstract The molar yield coefficients (Y glucose, Y O 2) of glucose-limited continuous cultures of the thermoacidophile Bacillus acidocaldarius have been measured as a function of dilution rate as well as over a range of temperature and pH (51°C to 64°C, pH 2.8–5.5) at a fixed dilution rate of approximately 0.1 h-1. The highest growth yields were observed at 51°C and pH〉4.3 (Y glucose 54.8 g cells · mol glucose-1, Y O 2 15.0 g cells · mol O 2 -1 ), but were very much lower than those of mesophilic neutrophiles of similar respiratory chain composition to B. acidocaldarius. Even lower growth yields were observed when the temperature was raised or when the pH was lowered, lowest yields occurring at 64°C and pH 2.8 (Y glucose 23.4 g cells · mol glucose-1, Y O 2 5.9 g cells · mol O 2 -1 ). These decreases in growth yield could be correlated with increases in the permeability of the cytoplasmic membrane to protons, i.e. cells needed to catalyse enhanced rates of substrate oxidation in order to avoid a potentially lethal acidification of the cytoplasm. This strategy appears to be successful in that the specific death rates in situ were very low for all cultures except those growing under the most extreme conditions (64°C, pH 2.8).
    Type of Medium: Electronic Resource
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  • 2
    ISSN: 1432-072X
    Keywords: Bacillus acidocaldarius ; Response surface analysis ; Temperature and pH
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology
    Notes: Abstract A minimal-salts medium has been optimised to support the growth of the acidophilic thermophilic bacterium Bacillus acidocaldarius. This medium was used during a study of the effect of temperature and pH on the growth rate and growth yield of this organism in batch cultures; a statistical method was used to design the experimental points, and the data were subjected to a response surface analysis which allowed the growth rate and growth yield to be predicted over the entire temperature and pH range from a minimum number of experimental points. The results indicate different responses for growth rate (optimum, 60°C, pH 4.1) and growth yield (optimum tending towards low temperature and neutral pH).
    Type of Medium: Electronic Resource
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