| NCIMB number | NCIMB 8598 |
| Deposit type | Bacteria |
| Type strain | No |
| GMO | No |
| Taxon name | Brevibacillus brevis |
| Depositor designation | B.G. N.R.Smith751 |
| Preservation method | Lyophilised |
| Price band | A |
| Media | 001 |
| Gas regime | aerobic |
| Growth factors (and/or information) | CM3, 30C, 2d: good growth |
| ACDP category | 1 |
| Colony Edge | Slight Erose |
| Colony Surface | Smooth |
| Colony Shape | Circular |
| Colony Elevation | Flat |
| Colony Colour | White |
| Colony Opacity | Translucent |
| Cellular Shape | Group Ii, Rod |
| Cellular Size | long, slender |
| Cellular Motility | Motile |
| Gram stain | Gram Negative |
| Cell inclusion bodies | Spores - Group Ii Terminal |
| Cellular (Other) | Parallel Sides, Rounded Ends |
| Depositor Company | Div. Bact. Dairy Research |
| Depositor Address | Ottawa Canada |
| Source | Soil |
| Isolated by | R.J. Dubos |
| Date of Accession | 01/03/1954 |
| Other collection IDs | ATCC8185 BUCSAV153 CCM1089 CDA515 CN2203 DSM362 IAM1031 IFO3331 NCDO717 |
| Yeast? | False |
| K12 | No |
| References | Dubos R.J. and Hotchkiss R.D. (1941) J. exp. Med. 73 p629 Stokes J.L. and Woodward C.R. (1943) J. Bact. 46 p83 Knight B.C.J.G. and Proom H. (1950) J. gen. Microbiol. 4 p508 Michener H.D. (1955) J. Bact. 70 p192 Okuda K. et al (1963) J. Bact. 85 p329 Ikeda Y., Saito H. et al (1966) J. gen. appl. Microbiol. 11 p181 Fujikawa K. et al (1968) Biochim. biophys. Acta 169 pp520-533. Biosynthesis of tyrocidine by a cell free enzyme system of Bacillus brevis ATCC 8185 II. Amino acid substitution in tyrocidine. Fulco A.J. (1969) J. biol. Chem. 244 (4) pp889-895. The biosynthesis of unsaturated fatty acids by bacilli. I. Temperature induction of the desaturation reaction. Kanke M. et al (1971) J. Biochem. 69 p131. Biosynthesis of Tyrocidine by a cell free enzyme system of B. brevis. IJSB (1997) 47 p243-244 Aerobic spore forming bacteria, US Dep Agric Monogr 16, 1-148, 1952 Characterization of Bacillus brevis with descriptions of Bacillus migulanus sp. nov., Bacillus choshinensis sp. nov., Bacillus parabrevis sp. nov., and Bacillus galactophilus sp. nov, Int J Syst Bacteriol 43(2), 221-231, 1993 Aerobic mesophilic spore-forming bacteria, US Dep Agric Misc Publ 559, 41, 1946 Bacillus brevis Migula 1900 taxonomy: reassociation and base composition of DNA, Int J Syst Bacteriol 41, 510-515, 1991 Biosynthesis of gramicidin and tryocidine in the Dubos strain of Bacillus brevis. I. Experiments with growing cultures, J Bacteriol 85, 329-338, 1963 BIOSYNTHESIS OF GRAMICIDINS AND TYROCIDINES IN CELL-FREE PREPARATIONS FROM BACILLUS BREVIS, Biochemistry 2, 719-725, 1963 Colowick, S. P., Kaplan, N. O. (eds.). Methods in Enzymology, vol. XLIII. Academic Press, New York 1975, (journal unknown) , 1975 Complete nucleotide sequence of the tycA gene coding the tyrocidine synthetase 1 from Bacillus brevis, Nucleic Acids Res 16(24), 11841, 1988 DNA base composition, susceptibility to bacteriophages and interspecific transformation as criteria for classification in the genus Bacillus, J Gen Appl Microbiol 11, 181, 1965 DNA relatedness of Bacillus brevis Migula 1900 strains and proposal of Bacillus agri sp. nov., nom. rev., and Bacillus centrosporus sp. nov., nom. rev, Int J Syst Bacteriol 43, 20-25, 1993 Formation of Tyrothricin in Submerged Cultures of Bacillus Brevis, J Bacteriol 46(1), 83-88, 1943 Identification of the promoter for a peptide antibiotic biosynthesis gene from Bacillus brevis and its regulation in Bacillus subtilis, J Bacteriol 169(5), 2215-2222, 1987 Proposal for two new genera, Brevibacillus gen. nov. and Aneurinibacillus gen. nov, Int J Syst Bacteriol 46(4), 939-946, 1996 Sporulation in Bacillus brevis: studies on protease and protein turnover, J Bacteriol 106(3), 739-744, 1971 The linear pentadecapeptide gramicidin is assembled by four multimodular nonribosomal peptide synthetases that comprise 16 modules with 56 catalytic domains, J Biol Chem 279(9), 7413-7419, 2004 THE PRODUCTION OF BACTERICIDAL SUBSTANCES BY AEROBIC SPORULATING BACILLI, J Exp Med 73(5), 629-640, 1941 The secondary structure of ribonuclease P RNA, the catalytic element of a ribonucleoprotein enzyme, Cell 52(1), 19-26, 1988 The tyrocidine biosynthesis operon of Bacillus brevis: complete nucleotide sequence and biochemical characterization of functional internal adenylation domains, J Bacteriol 179(21), 6843-6850, 1997 |
| NCIMB number | NCIMB 8598 |
| Deposit type | Bacteria |
| Type strain | No |
| GMO | No |
| Taxon name | Brevibacillus brevis |
| Depositor designation | B.G. N.R.Smith751 |
| Preservation method | Lyophilised |
| Price band | A |
| Media | 001 |
| Gas regime | aerobic |
| Growth factors (and/or information) | CM3, 30C, 2d: good growth |
| ACDP category | 1 |
| Colony Edge | Slight Erose |
| Colony Surface | Smooth |
| Colony Shape | Circular |
| Colony Elevation | Flat |
| Colony Colour | White |
| Colony Opacity | Translucent |
| Cellular Shape | Group Ii, Rod |
| Cellular Size | long, slender |
| Cellular Motility | Motile |
| Gram stain | Gram Negative |
| Cell inclusion bodies | Spores - Group Ii Terminal |
| Cellular (Other) | Parallel Sides, Rounded Ends |
| Depositor Company | Div. Bact. Dairy Research |
| Depositor Address | Ottawa Canada |
| Source | Soil |
| Isolated by | R.J. Dubos |
| Date of Accession | 01/03/1954 |
| Other collection IDs | ATCC8185 BUCSAV153 CCM1089 CDA515 CN2203 DSM362 IAM1031 IFO3331 NCDO717 |
| Yeast? | False |
| K12 | No |
| References | Dubos R.J. and Hotchkiss R.D. (1941) J. exp. Med. 73 p629 Stokes J.L. and Woodward C.R. (1943) J. Bact. 46 p83 Knight B.C.J.G. and Proom H. (1950) J. gen. Microbiol. 4 p508 Michener H.D. (1955) J. Bact. 70 p192 Okuda K. et al (1963) J. Bact. 85 p329 Ikeda Y., Saito H. et al (1966) J. gen. appl. Microbiol. 11 p181 Fujikawa K. et al (1968) Biochim. biophys. Acta 169 pp520-533. Biosynthesis of tyrocidine by a cell free enzyme system of Bacillus brevis ATCC 8185 II. Amino acid substitution in tyrocidine. Fulco A.J. (1969) J. biol. Chem. 244 (4) pp889-895. The biosynthesis of unsaturated fatty acids by bacilli. I. Temperature induction of the desaturation reaction. Kanke M. et al (1971) J. Biochem. 69 p131. Biosynthesis of Tyrocidine by a cell free enzyme system of B. brevis. IJSB (1997) 47 p243-244 Aerobic spore forming bacteria, US Dep Agric Monogr 16, 1-148, 1952 Characterization of Bacillus brevis with descriptions of Bacillus migulanus sp. nov., Bacillus choshinensis sp. nov., Bacillus parabrevis sp. nov., and Bacillus galactophilus sp. nov, Int J Syst Bacteriol 43(2), 221-231, 1993 Aerobic mesophilic spore-forming bacteria, US Dep Agric Misc Publ 559, 41, 1946 Bacillus brevis Migula 1900 taxonomy: reassociation and base composition of DNA, Int J Syst Bacteriol 41, 510-515, 1991 Biosynthesis of gramicidin and tryocidine in the Dubos strain of Bacillus brevis. I. Experiments with growing cultures, J Bacteriol 85, 329-338, 1963 BIOSYNTHESIS OF GRAMICIDINS AND TYROCIDINES IN CELL-FREE PREPARATIONS FROM BACILLUS BREVIS, Biochemistry 2, 719-725, 1963 Colowick, S. P., Kaplan, N. O. (eds.). Methods in Enzymology, vol. XLIII. Academic Press, New York 1975, (journal unknown) , 1975 Complete nucleotide sequence of the tycA gene coding the tyrocidine synthetase 1 from Bacillus brevis, Nucleic Acids Res 16(24), 11841, 1988 DNA base composition, susceptibility to bacteriophages and interspecific transformation as criteria for classification in the genus Bacillus, J Gen Appl Microbiol 11, 181, 1965 DNA relatedness of Bacillus brevis Migula 1900 strains and proposal of Bacillus agri sp. nov., nom. rev., and Bacillus centrosporus sp. nov., nom. rev, Int J Syst Bacteriol 43, 20-25, 1993 Formation of Tyrothricin in Submerged Cultures of Bacillus Brevis, J Bacteriol 46(1), 83-88, 1943 Identification of the promoter for a peptide antibiotic biosynthesis gene from Bacillus brevis and its regulation in Bacillus subtilis, J Bacteriol 169(5), 2215-2222, 1987 Proposal for two new genera, Brevibacillus gen. nov. and Aneurinibacillus gen. nov, Int J Syst Bacteriol 46(4), 939-946, 1996 Sporulation in Bacillus brevis: studies on protease and protein turnover, J Bacteriol 106(3), 739-744, 1971 The linear pentadecapeptide gramicidin is assembled by four multimodular nonribosomal peptide synthetases that comprise 16 modules with 56 catalytic domains, J Biol Chem 279(9), 7413-7419, 2004 THE PRODUCTION OF BACTERICIDAL SUBSTANCES BY AEROBIC SPORULATING BACILLI, J Exp Med 73(5), 629-640, 1941 The secondary structure of ribonuclease P RNA, the catalytic element of a ribonucleoprotein enzyme, Cell 52(1), 19-26, 1988 The tyrocidine biosynthesis operon of Bacillus brevis: complete nucleotide sequence and biochemical characterization of functional internal adenylation domains, J Bacteriol 179(21), 6843-6850, 1997 |