Abstract
Freezing an aqueous suspension of Escherichia coli NCSM at -78 C for 10 min, followed by thawing in water at 8 C for 30 min, resulted in the death of approximately 50% of the cells, as determined by their inability to form colonies on Trypticase soy agar containing 0.3% yeast extract (TSYA). Among the survivors, more than 90% of the cells were injured, as they failed to form colonies on TSYA containing 0.1% deoxycholate. Microscope counts and optical density determinations at 600 nm suggested that death from freezing was not due to lysis of the cells. Death and the injury were accompanied by the loss of 260- and 280-nm absorbing materials from the intracellular pool. Injury was reversible as the injured cells repaired in many suitable media. The rate of repair was rapid and maximum in a complex nutrient medium such as Trypticase soy broth supplemented with yeast extract. However, inorganic phosphate, with or without MgSO(4), was able to facilitate repair. Repair in phosphate was dependent on the pH, the temperature, and the concentration of phosphate.
MeSH Terms
Acetone
Bacteriological Techniques
Bile Acids and Salts
Cell Count
Cell Survival
Culture Media
DNA Repair
Dry Ice
Escherichia coli/growth & development,isolation & purification,metabolism
Freezing
Glycols
Hydrogen-Ion Concentration
Magnesium Sulfate
Nitrogen
Phosphates
Pyruvates
Saccharomyces
Temperature
Chemicals
Bile Acids and Salts
Culture Media
Dry Ice
Glycols
Phosphates
Pyruvates
Acetone
Magnesium Sulfate
Nitrogen
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Ray B
Speck M L
References (14)
14 references, click to expand
-
Identification of nutritional components in trypticase responsible for recovery of Escherichia coli injured by freezing.
J Bacteriol. 1966 Mar;91(3):1098-104
PMID: 5326093
-
Release of biologically active peptides from Escherichia coli at subzero temperatures.
J Bacteriol. 1966 Mar;91(3):1105-11
PMID: 5326094
-
The role of multivalent cations in the organization and structure of bacterial cell walls.
Biochem Biophys Res Commun. 1966 Mar 22;22(6):664-71
PMID: 4957666
-
Metabolic injury to bacteria. I. Effect of freezing and storage on the requirements of Aerobacter aerogenes and Escherichia coli for growth.
Can J Microbiol. 1966 Feb;12(1):61-72
PMID: 4958829
-
Resistance to actinomycin D of Escherichia coli after frozen storage.
Can J Microbiol. 1967 Jul;13(7):914-7
PMID: 5341207
-
Characterization of injury incurred by Escherichia coli upon freeze-drying.
J Bacteriol. 1970 Feb;101(2):429-37
PMID: 4905308
-
Role of suspending and recovery media in the survival of frozen Shigella sonnei.
Appl Microbiol. 1962 Jan;10:40-3
PMID: 14478140
-
Repair of injury in freeze-dried Salmonella anatum.
Appl Microbiol. 1971 Sep;22(3):401-7
PMID: 5000867
-
Characterization of the repair of injury induced by freezing Salmonella anatum.
Appl Microbiol. 1972 Apr;23(4):803-9
PMID: 4553147
-
Metabolic injury to bacteria at low temperatures.
J Bacteriol. 1959 Aug;78:181-5
PMID: 13835066
-
Effect of chilling on Aerobacter aerogenes in aqueous suspension.
J Gen Microbiol. 1962 Dec;29:719-30
PMID: 13978749
-
PENETRATION OF SUBSTANCES INTO COLD-SHOCKED BACTERIA.
J Gen Microbiol. 1964 Sep;36:393-403
PMID: 14218300
-
EFFECT OF MAGNESIUM ON PERMEABILITY CONTROL IN CHILLED BACTERIA.
Nature. 1964 Sep 19;203:1304-5
PMID: 14230226
-
Requirements of Salmonella typhimurium for recovery from thermal injury.
J Bacteriol. 1971 Feb;105(2):512-8
PMID: 4925192