Kapinusova G, Lopez Marin M, Uhlik O
Front Microbiol. 2023; 14:1089630.
PMID: 36960281
PMC: 10027941.
DOI: 10.3389/fmicb.2023.1089630.
Henkin T
J Bacteriol. 2016; 198(14):1904.
PMID: 27354106
PMC: 4936097.
DOI: 10.1128/JB.00312-16.
Ross A, STANLEY W
J Gen Physiol. 2009; 22(2):165-91.
PMID: 19873099
PMC: 2141984.
DOI: 10.1085/jgp.22.2.165.
Davis F, Williams O
J Bacteriol. 1948; 56(5):555-9.
PMID: 16561605
PMC: 518622.
FOSTER J, WYNNE E
J Bacteriol. 1948; 55(5):623-5.
PMID: 16561500
PMC: 518493.
DOI: 10.1128/jb.55.5.623-625.1948.
Physiological Studies on Spore Germination with Special Reference to Clostridium botulinum: I. Development of a Quantitative Method.
WYNNE E, FOSTER J
J Bacteriol. 1948; 55(1):61-8.
PMID: 16561435
PMC: 518408.
The accelerating effect of sublethal heat on spore germination in mesophilic aerobic bacteria.
EVANS F, CURRAN H
J Bacteriol. 1943; 46(6):513-23.
PMID: 16560735
PMC: 373854.
DOI: 10.1128/jb.46.6.513-523.1943.
Factors which Influence the Growth of Heat-treated Bacteria: I. A Comparison of Four Agar Media.
Nelson F
J Bacteriol. 1943; 45(4):395-403.
PMID: 16560644
PMC: 373753.
DOI: 10.1128/jb.45.4.395-403.1943.
Relation of Maximum Growth Temperature to Resistance to Heat.
Lamanna C
J Bacteriol. 1942; 44(1):29-35.
PMID: 16560544
PMC: 373649.
DOI: 10.1128/jb.44.1.29-35.1942.
The Importance of Enrichments in the Cultivation of Bacterial Spores Previously Exposed to Lethal Agencies.
CURRAN H, EVANS F
J Bacteriol. 1937; 34(2):179-89.
PMID: 16560045
PMC: 545220.
DOI: 10.1128/jb.34.2.179-189.1937.
Studies on Bacterial Spores: III. A Contribution to the Physiology of Spore Production in Bacillus mycoides.
BRUNSTETTER B, Magoon C
J Bacteriol. 1932; 24(2):85-122.
PMID: 16559580
PMC: 533359.
DOI: 10.1128/jb.24.2.85-122.1932.
BACTERIAL SPORES II. A STUDY OF BACTERIAL SPORE GERMINATION IN RELATION TO ENVIRONMENT.
Morrison E, Rettger L
J Bacteriol. 1930; 20(5):313-42.
PMID: 16559460
PMC: 375122.
DOI: 10.1128/jb.20.5.313-342.1930.
THE ENDOSPORE OF BACTERIA.
KNAYSI G
Bacteriol Rev. 1948; 12(1):19-77.
PMID: 16350116
PMC: 440927.
DOI: 10.1128/br.12.1.19-77.1948.
PHYSICAL METHODS OF STERILIZATION OF MICROORGANISMS.
RAHN O
Bacteriol Rev. 1945; 9(1):1-47.
PMID: 16350098
PMC: 440886.
DOI: 10.1128/br.9.1.1-47.1945_1.
Attempts to increase the heat resistance of the spores of a putrefactive anaerobe by selection.
DESROSIER N, ESSELEN Jr W
J Bacteriol. 1951; 61(5):541-7.
PMID: 14832196
PMC: 386042.
DOI: 10.1128/jb.61.5.541-547.1951.
EFFECT OF SPORULATION MEDIUM ON HEAT RESISTANCE, CHEMICAL COMPOSITION, AND GERMINATION OF BACILLUS MEGATERIUM SPORES.
LEVINSON H, HYATT M
J Bacteriol. 1964; 87:876-86.
PMID: 14137627
PMC: 277107.
DOI: 10.1128/jb.87.4.876-886.1964.
The nonlogarithmic rate of thermal destruction of spores of Bacillus coagulans.
Frank H, CAMPBELL Jr L
Appl Microbiol. 1957; 5(4):243-8.
PMID: 13459313
PMC: 1057298.
DOI: 10.1128/am.5.4.243-248.1957.
Supplementation of media with yeast culture for counting anaerobic spores.
Adams A, Ayres J
Appl Microbiol. 1955; 3(4):226-30.
PMID: 13239114
PMC: 1057105.
DOI: 10.1128/am.3.4.226-230.1955.
Stimulation of germination and respiration of the spores of Bacillus megatherium by manganese and monovalent anions.
LEVINSON H, SEVAG M
J Gen Physiol. 1953; 36(5):617-29.
PMID: 13052900
PMC: 2147384.
DOI: 10.1085/jgp.36.5.617.
Effect of several environmental conditions on the "thermal death rate" of endospores of aerobic, thermophilic bacteria.
Yokoya F, York G
Appl Microbiol. 1965; 13(6):993-9.
PMID: 5866047
PMC: 1058384.
DOI: 10.1128/am.13.6.993-999.1965.