Abstract
Levinson, Hillel S. (U.S. Army Natick Laboratories, Natick, Mass.), and Mildred T. Hyatt. Effect of sporulation medium on heat resistance, chemical composition, and germination of Bacillus megaterium spores. J. Bacteriol. 87:876-886. 1964.-Bacillus megaterium spores, grown on variously supplemented media, had varying concentrations of P, Ca, Mn, or dipicolinic acid. Supplementation with CaCl(2) yielded spores with increased heat resistance; addition of l-glutamate, l-proline, or increase of the phosphate concentration yielded spores with reduced heat resistance. Germination characteristics depended on both the sporulation medium and the germinant (glucose, l-alanine, l-leucine, or KNO(3)); pronounced differences were demonstrable with glucose and l-alanine, which trigger germination via different metabolic pathways. An increase in CaCl(2) during sporulation yielded spores with increased germination in glucose but not in l-alanine. Germination in l-alanine was optimal with spores produced on media containing 0.1 mm MnCl(2), but germination of such spores was minimal in glucose. An increase in the sporulation medium phosphate decreased the initial germination rate in glucose, but not in l-alanine. Spores produced in CaCl(2)-supplemented media had increased heat-activation requirements (increased dormancy) for germination induced by l-alanine, and decreased heat-shock requirements for glucose-induced germination. An increase of sporulation phosphate yielded spores with reduced dormancy for germination induced by l-alanine, but with unchanged dormancy on the other germinants. Spores produced with added l-glutamate had reduced dormancy for glucose-induced germination, and increased dormancy for germination induced by l-alanine. Addition of CaCl(2) or l-glutamate to the sporulation medium yielded spores with increased sensitivity to "ionic germination" (with KI). Spores from synthetic medium were incapacitated for full postgerminative development, as shown by repression of the changes in oxygen-uptake rate which accompany normal cell division.
Keywords
ALANINE
BACILLUS MEGATERIUM
BACTERIOLOGICAL TECHNICS
BIOCHEMISTRY
CULTURE MEDIA
EXPERIMENTAL LAB STUDY
GLUCOSE
HEAT
LEUCINE
NITRATES
POTASSIUM
SPORES
MeSH Terms
Alanine
Bacillus megaterium
Bacteriological Techniques
Biochemical Phenomena
Biochemistry
Culture Media
Glucose
Glutamates
Glutamic Acid
Hot Temperature
Leucine
Nitrates
Phosphates
Picolinic Acids
Potassium
Proline
Research
Spores
Spores, Bacterial
Chemicals
Culture Media
Glutamates
Nitrates
Phosphates
Picolinic Acids
Glutamic Acid
Proline
Leucine
Glucose
Alanine
Potassium
dipicolinic acid
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
LEVINSON H S
HYATT M T
References (21)
21 references, click to expand
-
BACTERIAL SPORES I. A STUDY IN HEAT RESISTANCE AND DORMANCY.
J Bacteriol. 1930 Nov;20(5):299-311
PMID: 16559459
-
Studies on the spores of aerobic bacteria. I. The occurrence of alanine racemase.
J Bacteriol. 1953 Feb;65(2):160-6
PMID: 13034709
-
Studies on factors affecting the heat resistance of spores of Clostridium botulinum.
J Bacteriol. 1951 Jul;62(1):81-96
PMID: 14861162
-
Ionic and non-ionic compounds in the germination of spores of Bacillus megaterium Texas.
Arch Mikrobiol. 1962;43:201-12
PMID: 14493088
-
The effect of certain sporulation conditions on the thermal death rate of Bacillus coagulans var. thermoacidurans.
J Bacteriol. 1956 Jan;71(1):1-9
PMID: 13286224
-
CHEMICALLY DEFINED, SYNTHETIC MEDIA FOR SPORULATION AND FOR GERMINATION AND GROWTH OF BACILLUS SUBTILIS.
J Bacteriol. 1964 Feb;87:332-6
PMID: 14151053
-
Interaction of heat, glucose, L-alanine, and potassium nitrate in spore germination of Bacillus megaterium.
J Bacteriol. 1961 Feb;81:204-11
PMID: 13717135
-
Correlation of respiratory activity with phases of spore germination and growth in Bacillus megaterium as influenced by manganese and L-alanine.
J Bacteriol. 1956 Aug;72(2):176-83
PMID: 13366895
-
Germination properties of spores with low dipicolinic acid content.
J Bacteriol. 1962 Feb;83:395-9
PMID: 14455468
-
The influence of the sporulation temperature on the heat resistance and chemical composition of bacterial spores.
Can J Microbiol. 1962 Jun;8:287-95
PMID: 14463368
-
Stimulation of germination and respiration of the spores of Bacillus megatherium by manganese and monovalent anions.
J Gen Physiol. 1953 May;36(5):617-29
PMID: 13052900
-
MINERAL DEFICIENCIES IN COMPLEX ORGANIC MEDIA AS LIMITING FACTORS IN THE SPORULATION OF AEROBIC BACILLI.
J Bacteriol. 1949 Jun;57(6):613-5
PMID: 16561741
-
Colorimetric assay for dipicolinic acid in bacterial spores.
Science. 1958 Jan 3;127(3288):26-7
PMID: 13495474
-
Alterations in metal content of spores of Bacillus megaterium and the effect on some spore properties.
J Bacteriol. 1959 Jul;78(1):117-23
PMID: 13672918
-
Spectrochemical Analysis of Vegetative Cells and Spores of Bacteria.
J Bacteriol. 1943 May;45(5):485-94
PMID: 16560658
-
The Problem of "Dormancy" in Bacterial Spores.
J Bacteriol. 1948 May;55(5):623-5
PMID: 16561500
-
Pathways of glucose catabolism in intact heat-activated spores of Bacillus cereus.
Biochem Biophys Res Commun. 1960 Aug;3:164-8
PMID: 13850703
-
Ionic germination of spores of Bacillus megaterium QM B 1551.
Arch Mikrobiol. 1962;43:183-200
PMID: 14038736
-
Conditions affecting Bacillus megaterium spore germination in glucose or various nitrogenous compounds.
J Bacteriol. 1962 Jun;83:1231-7
PMID: 14450308
-
Intermediate metabolism of aerobic spores. I. Activation of glucose oxidation in spores of Bacillus cereus var terminalis.
J Bacteriol. 1957 Apr;73(4):470-6
PMID: 13428677
-
Effects of Sporulation Medium and Age on Fungus Spore Physiology.
Plant Physiol. 1955 Jul;30(4):360-6
PMID: 16654786