| NCIMB number | NCIMB 9373 |
| Deposit type | Bacteria |
| Type strain | Yes |
| GMO | No |
| Taxon name | Bacillus cereus |
| Depositor designation | Gibson971 Ford13 |
| Preservation method | Lyophilised |
| Price band | A |
| Media | 001 |
| Gas regime | aerobic |
| Incubation period | 1 days |
| Growth factors (and/or information) | CM3, 30C, 24hr: good growth |
| ACDP category | 2 |
| Hazard information | This species has been associated with "food poisoning". |
| Colony Edge | Slightly Erose |
| Colony Surface | Rough/Dry |
| Colony Shape | Circular/Irregular |
| Colony Elevation | Flat |
| Colony Colour | Off White |
| Colony Opacity | Opaque |
| Cellular Shape | Rod |
| Cellular Size | medium |
| Cellular Arrangement | Chains |
| Cellular Motility | Yes |
| Gram stain | Gram Positive |
| Cell inclusion bodies | Spores - Not Distending Sporangia |
| Cellular (Other) | 37C: Parallel Sides, Rounded Ends, Intracellular Globules From Glucose Agar, 25C, 1D. |
| Depositor Name | R.E.Gordon |
| Depositor Company | Rutgers |
| Depositor Address | The State University New Jersey U.S.A. |
| Date of Accession | 27/02/1962 |
| History | T.Gibson -- W.W.Ford |
| Other collection IDs | ATCC14579 CCM2010 CECT148 CIP66.24 DSM31 IAM12605 IFO15305 JCM2152 NCTC2599 NCDO1771 |
| Yeast? | False |
| K12 | No |
| References | Lawrence and Ford W.W. (1916) J. Bact. 1 p284 Bergey 7th edition p617 Smith N.R. et al (1964) J. Gen. Microbiol. 34 p269 Int. Bull. Taxon. Nomen. (1965) 15(1) pp55-59. Rosenberg H. and La Noaze J.M. (1967) Biochim. biophys. Acta 141 p79. The metabolism of phosphonates in microorganisms. The transport of aminoethylphosphoric acid in B. cereus. Mossel D.A. et al (1967) Appl. Microbiol. 15 p650. Enumeration of Bacillus cereus in foods. White P.J. (1972) J. gen. Microbiol. 71 p505 Fields M.L. (1973) J. Fd. Sci. 38 p1166 Stuart S.E. and Welshimer H.J. (1974) Int. J. syst. Bact. 24(2) p177 The tmRNA website: reductive evolution of tmRNA in plastids and other endosymbionts, Nucleic Acids Res 32(Databaseissue), D104-D108, 2004 Kinship in the SRP RNA family, RNA Biol 6(5), 508-516, 2009 The tmRDB and SRPDB resources, Nucleic Acids Res 34(Databaseissue), D163-D168, 2006 Bacillus anthracis diverges from related clades of the Bacillus cereus group in 16S-23S ribosomal DNA intergenic transcribed spacers containing tRNA genes, Appl Environ Microbiol 69(1), 33-40, 2003 DnaJ sequences of Bacillus cereus strains isolated from outbreaks of hospital infection are highly similar to Bacillus anthracis, Diagn Microbiol Infect Dis 70(3), 307-315, 2011 Oligonucleotide microarray for identification of Bacillus anthracis based on intergenic transcribed spacers in ribosomal DNA, FEMS Microbiol Lett 240(2), 215-223, 2004 PCR assay of the groEL gene for detection and differentiation of Bacillus cereus group cells, Appl Environ Microbiol 69(8), 4502-4510, 2003 The Bacillus cereus bceT enterotoxin sequence reappraised, FEMS Microbiol Lett 223(1), 21-24, 2003 Bacillus anthracis pXO1 plasmid sequence conservation among closely related bacterial species, J Bacteriol 184(1), 134-141, 2002 Biochemical and Mutational Studies of the Bacillus cereus CECT 5050T Formamidase Support the Existence of a C-E-E-K Tetrad in Several Members of the Nitrilase Superfamily, Appl Environ Microbiol 77(16), 5761-5769, 2011 CodY, a pleiotropic regulator, influences multicellular behaviour and efficient production of virulence factors in Bacillus cereus, Environ Microbiol 14(8), 2233-2246, 2012 Effect of primer mismatch, annealing temperature and PCR cycle number on 16S rRNA gene-targetting bacterial community analysis, FEMS Microbiol Ecol 60(2), 341-350, 2007 Emetic toxin formation of Bacillus cereus is restricted to a single evolutionary lineage of closely related strains, Microbiology 151(1), 183-197, 2005 FlhF, a signal recognition particle-like GTPase, is involved in the regulation of flagellar arrangement, motility behaviour and protein secretion in Bacillus cereus, Microbiology 153(8), 2541-2552, 2007 Genome sequence of Bacillus cereus and comparative analysis with Bacillus anthracis, Nature 423(6935), 87-91, 2003 Identification of Bacillus anthracis from Culture -- Gas Chromatographic Analysis of Fatty Acid Methyl Esters (FAMEs).Gaithersburg, MD, (journal unknown) , AOAC International, 2004 Identification of Presumptive Isolates of Bacillus anthracis.Gaithersburg, MD, (journal unknown) , AOAC International, 2004 Inorganic polyphosphate in Bacillus cereus: motility, biofilm formation, and sporulation, Proc Natl Acad Sci U S A 101(49), 17061-17065, 2004 Methionine regeneration and aminotransferases in Bacillus subtilis, Bacillus cereus, and Bacillus anthracis, J Bacteriol 185(8), 2418-2431, 2003 Multilocus sequence typing scheme for bacteria of the Bacillus cereus group, Appl Environ Microbiol 70(1), 191-201, 2004 Multiple-locus sequence typing analysis of Bacillus cereus and Bacillus thuringiensis reveals separate clustering and a distinct population structure of psychrotrophic strains, Appl Environ Microbiol 72(2), 1569-1578, 2006 Nature versus nurture in two highly enantioselective esterases from Bacillus cereus and Thermoanaerobacter tengcongensis, Microb Biotechnol 3(1), 65-73, 2010 Role Played by Exosporium Glycoproteins in the Surface Properties of Bacillus cereus Spores and in Their Adhesion to Stainless Steel, Appl Environ Microbiol 77(14), 4905-4911, 2011 The Bacillus thuringiensis linear double-stranded DNA phage Bam35, which is highly similar to the Bacillus cereus linear plasmid pBClin15, has a prophage state, J Bacteriol 185(23), 6985-6989, 2003 Transcriptional Responses of Bacillus cereus towards Challenges with the Polysaccharide Chitosan, PLoS One 6(9), e24304, 2011 |
| NCIMB number | NCIMB 9373 |
| Deposit type | Bacteria |
| Type strain | Yes |
| GMO | No |
| Taxon name | Bacillus cereus |
| Depositor designation | Gibson971 Ford13 |
| Preservation method | Lyophilised |
| Price band | A |
| Media | 001 |
| Gas regime | aerobic |
| Incubation period | 1 days |
| Growth factors (and/or information) | CM3, 30C, 24hr: good growth |
| ACDP category | 2 |
| Hazard information | This species has been associated with "food poisoning". |
| Colony Edge | Slightly Erose |
| Colony Surface | Rough/Dry |
| Colony Shape | Circular/Irregular |
| Colony Elevation | Flat |
| Colony Colour | Off White |
| Colony Opacity | Opaque |
| Cellular Shape | Rod |
| Cellular Size | medium |
| Cellular Arrangement | Chains |
| Cellular Motility | Yes |
| Gram stain | Gram Positive |
| Cell inclusion bodies | Spores - Not Distending Sporangia |
| Cellular (Other) | 37C: Parallel Sides, Rounded Ends, Intracellular Globules From Glucose Agar, 25C, 1D. |
| Depositor Name | R.E.Gordon |
| Depositor Company | Rutgers |
| Depositor Address | The State University New Jersey U.S.A. |
| Date of Accession | 27/02/1962 |
| History | T.Gibson -- W.W.Ford |
| Other collection IDs | ATCC14579 CCM2010 CECT148 CIP66.24 DSM31 IAM12605 IFO15305 JCM2152 NCTC2599 NCDO1771 |
| Yeast? | False |
| K12 | No |
| References | Lawrence and Ford W.W. (1916) J. Bact. 1 p284 Bergey 7th edition p617 Smith N.R. et al (1964) J. Gen. Microbiol. 34 p269 Int. Bull. Taxon. Nomen. (1965) 15(1) pp55-59. Rosenberg H. and La Noaze J.M. (1967) Biochim. biophys. Acta 141 p79. The metabolism of phosphonates in microorganisms. The transport of aminoethylphosphoric acid in B. cereus. Mossel D.A. et al (1967) Appl. Microbiol. 15 p650. Enumeration of Bacillus cereus in foods. White P.J. (1972) J. gen. Microbiol. 71 p505 Fields M.L. (1973) J. Fd. Sci. 38 p1166 Stuart S.E. and Welshimer H.J. (1974) Int. J. syst. Bact. 24(2) p177 The tmRNA website: reductive evolution of tmRNA in plastids and other endosymbionts, Nucleic Acids Res 32(Databaseissue), D104-D108, 2004 Kinship in the SRP RNA family, RNA Biol 6(5), 508-516, 2009 The tmRDB and SRPDB resources, Nucleic Acids Res 34(Databaseissue), D163-D168, 2006 Bacillus anthracis diverges from related clades of the Bacillus cereus group in 16S-23S ribosomal DNA intergenic transcribed spacers containing tRNA genes, Appl Environ Microbiol 69(1), 33-40, 2003 DnaJ sequences of Bacillus cereus strains isolated from outbreaks of hospital infection are highly similar to Bacillus anthracis, Diagn Microbiol Infect Dis 70(3), 307-315, 2011 Oligonucleotide microarray for identification of Bacillus anthracis based on intergenic transcribed spacers in ribosomal DNA, FEMS Microbiol Lett 240(2), 215-223, 2004 PCR assay of the groEL gene for detection and differentiation of Bacillus cereus group cells, Appl Environ Microbiol 69(8), 4502-4510, 2003 The Bacillus cereus bceT enterotoxin sequence reappraised, FEMS Microbiol Lett 223(1), 21-24, 2003 Bacillus anthracis pXO1 plasmid sequence conservation among closely related bacterial species, J Bacteriol 184(1), 134-141, 2002 Biochemical and Mutational Studies of the Bacillus cereus CECT 5050T Formamidase Support the Existence of a C-E-E-K Tetrad in Several Members of the Nitrilase Superfamily, Appl Environ Microbiol 77(16), 5761-5769, 2011 CodY, a pleiotropic regulator, influences multicellular behaviour and efficient production of virulence factors in Bacillus cereus, Environ Microbiol 14(8), 2233-2246, 2012 Effect of primer mismatch, annealing temperature and PCR cycle number on 16S rRNA gene-targetting bacterial community analysis, FEMS Microbiol Ecol 60(2), 341-350, 2007 Emetic toxin formation of Bacillus cereus is restricted to a single evolutionary lineage of closely related strains, Microbiology 151(1), 183-197, 2005 FlhF, a signal recognition particle-like GTPase, is involved in the regulation of flagellar arrangement, motility behaviour and protein secretion in Bacillus cereus, Microbiology 153(8), 2541-2552, 2007 Genome sequence of Bacillus cereus and comparative analysis with Bacillus anthracis, Nature 423(6935), 87-91, 2003 Identification of Bacillus anthracis from Culture -- Gas Chromatographic Analysis of Fatty Acid Methyl Esters (FAMEs).Gaithersburg, MD, (journal unknown) , AOAC International, 2004 Identification of Presumptive Isolates of Bacillus anthracis.Gaithersburg, MD, (journal unknown) , AOAC International, 2004 Inorganic polyphosphate in Bacillus cereus: motility, biofilm formation, and sporulation, Proc Natl Acad Sci U S A 101(49), 17061-17065, 2004 Methionine regeneration and aminotransferases in Bacillus subtilis, Bacillus cereus, and Bacillus anthracis, J Bacteriol 185(8), 2418-2431, 2003 Multilocus sequence typing scheme for bacteria of the Bacillus cereus group, Appl Environ Microbiol 70(1), 191-201, 2004 Multiple-locus sequence typing analysis of Bacillus cereus and Bacillus thuringiensis reveals separate clustering and a distinct population structure of psychrotrophic strains, Appl Environ Microbiol 72(2), 1569-1578, 2006 Nature versus nurture in two highly enantioselective esterases from Bacillus cereus and Thermoanaerobacter tengcongensis, Microb Biotechnol 3(1), 65-73, 2010 Role Played by Exosporium Glycoproteins in the Surface Properties of Bacillus cereus Spores and in Their Adhesion to Stainless Steel, Appl Environ Microbiol 77(14), 4905-4911, 2011 The Bacillus thuringiensis linear double-stranded DNA phage Bam35, which is highly similar to the Bacillus cereus linear plasmid pBClin15, has a prophage state, J Bacteriol 185(23), 6985-6989, 2003 Transcriptional Responses of Bacillus cereus towards Challenges with the Polysaccharide Chitosan, PLoS One 6(9), e24304, 2011 |