Abstract
Microcycle sporogenesis induced in Bacillus cereus T by phosphate limitation occurs over a narrow range of phosphate to spore inoculum ratios. Sufficient phosphate is required to satisfy the demands for a twofold increase in deoxyribonucleic acid; net ribonucleic acid synthesis is not required. The total ribonucleic acid content of the culture was variable, and deoxyribonucleic acid synthesis was restricted to a twofold increase. Developmental changes during outgrowth occurred synchronously, whereas enzyme synthesis was periodic. The timing of the synthesis of tricarboxylic cycle enzymes, extracellular protease, arginase, histidase, and alkaline phosphatase was measured. Histidase could be induced after 2.5 hr throughout microcycle sporogenesis. Several other features of macromolecular synthesis during microcycle sporogenesis are described. Differences between this pattern and those observed during outgrowth leading to cell division are discussed. A technique for accurately estimating the levels and time of synthesis of incompletely extractable, labile enzymes is also presented.
MeSH Terms
Alkaline Phosphatase/biosynthesis
Arginase/biosynthesis
Bacillus cereus/drug effects,enzymology,metabolism
Cell Division/drug effects
Culture Media
DNA, Bacterial/biosynthesis
Enzymes/biosynthesis
Glucose/pharmacology
Hydro-Lyases/metabolism
Lyases/biosynthesis
Peptide Hydrolases/biosynthesis
Phosphates/metabolism
RNA, Bacterial/biosynthesis
Spores/metabolism
Time Factors
Tritium
Uracil/metabolism
Chemicals
Culture Media
DNA, Bacterial
Enzymes
Phosphates
RNA, Bacterial
Tritium
Uracil
Alkaline Phosphatase
Peptide Hydrolases
Arginase
Lyases
Hydro-Lyases
Glucose
Authors & Affiliations
1 authors, click to expand affiliations / ORCID
MacKechnie I
References (18)
18 references, click to expand
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