Abstract
Dielectric measurements revealed that dormant spores of Bacillus cereus have extremely low conductivities at high frequencies (50 MHz) and so must contain remarkably low concentrations of mobile ions both within the core and in the surrounding integuments. Activation, germination, and outgrowth were all accompanied by increases in conductivity of the cells and their suspending medium, and this result indicated that intracellular electrolytes had become ionized and leaked from the spores. High-frequency dielectric constants of spores were consistent with normal states for cell water. These values increased during successive stages of development from dormant spore to vegetative bacillus, and they could be directly related to increases in cell water content. In all, the results refuted a model of the dormant spore involving freely mobile, ionized electrolytes and supported a model involving electrostatically bound electrolytes.
MeSH Terms
Aerobiosis
Alanine
Bacillus cereus/cytology,growth & development,metabolism
Cell Membrane Permeability
Culture Media
Electric Conductivity
Electrolytes/metabolism
Microscopy, Phase-Contrast
Models, Chemical
Nucleosides
Spores/metabolism
Spores, Bacterial/growth & development,metabolism
Stereoisomerism
Ultracentrifugation
Water/metabolism
Chemicals
Culture Media
Electrolytes
Nucleosides
Water
Alanine
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Carstensen E L
Marquis R E
Gerhardt P
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