| NCIMB number | NCIMB 8017 |
| Deposit type | Bacteria |
| Type strain | No |
| GMO | No |
| Taxon name | Klebsiella oxytoca |
| Preservation method | Lyophilised |
| Preserved as | Klebsiella aerogenes |
| Price band | A |
| Media | 001 |
| Gas regime | aerobic |
| Growth factors (and/or information) | NA, 30C, 24hr: viscid consistency |
| ACDP category | 2 |
| Hazard information | Klebsiella are opportunistic pathogens that can give rise to bacteraemia, pneomonia urinary tract and several other types of human infection. |
| Colony Edge | Entire |
| Colony Surface | Smooth/Shiny |
| Colony Shape | Circular |
| Colony Elevation | Convex |
| Colony Colour | Yellow-White |
| Colony Opacity | Opaque |
| Cellular Shape | Rod |
| Cellular Arrangement | Singly |
| Cellular Motility | No |
| Gram stain | Gram Negative |
| Cellular (Other) | Straight Axis, Parallel Sides, Rounded Ends, Monomorphic |
| Depositor Company | Northern Utilization Research and Development Division |
| Depositor Address | Peoria Illinois U.S.A. |
| Other collection IDs | ATCC8724 BUCSAV143 CCM1901 DSM4798 NCDC380-68 NCIMB8521 NCIMB9901 NRC474 NRRLB-199 PRL-R3 |
| Yeast? | False |
| K12 | No |
| References | Adams G.A. (1946) Can. J. Res. F24 pp1-11 Adams G.A. and Leslie J.D. (1946) Can. J. Res. F24 pp107-116 Freeman G.G. (1947) Biochem J. 41 p389 Freeman G.G. and Morrison R.I. (1947) J. Soc. chem. Ind. 66 p216 Neish A.C. and Simpson F.J. (1954) Can. J. Biochem. Physiol. 32 p147 Altermatt H.A., Simpson F.J. and Neish A.C. (1955) Can. J. Biochem. Physiol. 33 p615 Simpson F.J., Wolin M.J. and Wood W.A. (1958) J. biol. Chem. 230 p457 Wood W.A. and Tai J.V. (1958) Bact. Proc. p99 Eddy B.P. and Kitchell A.G. (1959) J. appl. Bact. 22(1) pp57-63 Thornley M.J. (1960) J. appl. Bact. 23 p37 Wood W.A. , McDonough M.J. and Jacobs L.B. (1961) J. biol. Chem. 236 p2190 Mortlock R.P. and Wood W.A. (1964) J. Bact. 88 p838 Matsushima K. and Simpson F.J. (1965) Can. J. Microbiol. 11 p967 Fossitt D.D., Mortlock R.P. and Wood W.A. (1965) Bact. Proc. p82 Mortlock R.P., Fossitt D.D., Petering D.H. and Wood W.A. (1965) J. Bact. 89 p129 Matsushima K. and Simpson F.J. (1966) Can. J. Microbiol. 12 p313 Hanson T.E. and Anderson R.L. (1966) J. biol. Chem. 241 p1644 Bisson T.M. and Mortlock R.P. (1968) J. Bact. 95 pp925-931 Bisson T.M., Oliver E.J. and Mortlock R.P. (1968) J. Bact. 95 pp932-936 Harrison D.E.F. and Maitra P.K. (1969) Biochem J. 112(5) p647 Brown M.R.W. and Wood S.M. (1971) J. Pharm. Pharmac. 24 pp215-218. Dean A.C.R. et al (1972) Biochem J. 126 15P. Pullulanase synthesis in Klebsiella (Aerobacter) aerogenes Harrison D.E.F. (1972) Biochim. biophys. Acta 275(1) p83. A study of the effect of growth conditions on chemostat-grown K. aerogenes and kinetic changes of a 500nm absorption band. Hernandez E. and Pirt S.J. (1975) J. appl. chem. Biotechnol. 25 pp297-304. Kinetics of utilisation of a highly polymerised carbon source (starch) in a chemostat culture of Klebsiella aerogenes: pullulanase and alpha-amylase activities. (Unknown), Application of bioenergetics to modelling the microbial conversion of D-xylose to 2, 3-butanediol Biotechnol Bioeng 26, 573-582, 1984 (Unknown), Can J Res F 24, 1, 107, 1946 (Unknown), J Appl Bacteriol 22, 57, 1959 (Unknown), J Soc Chem Ind 66, 216, 1947 (Unknown), Production of 2,3-butanediol from D-xylose by Klebsiella oxytoca ATCC 8724 Biotechnol Bioeng 26, 362-369, 1984 Descriptive catalogue of IFO culture collection of bacteria 2, IFO Res Commun 7, 143-145, 1975 The tmRNA website: reductive evolution of tmRNA in plastids and other endosymbionts, Nucleic Acids Res 32(Databaseissue), D104-D108, 2004 Trek Diagnostic Systems, (journal unknown) , Sensititre Application of bioenergetics to modelling the microbial conversion of D-xylose to 2,3-butanediol, Biotechnol Bioeng 26(6), 573-582, 1984 Can, J Res F24, 1, 1946 Characterization, sequencing, and expression of the genes encoding a reactivating factor for glycerol-inactivated adenosylcobalamin-dependent diol dehydratase, J Biol Chem 272(51), 32034-32041, 1997 Complete Genome Sequence of Klebsiella oxytoca KCTC 1686, Used in Production of 2,3-Butanediol, J Bacteriol 194(9), 2371-2372, 2012 Development and testing of a DNA macroarray to assess nitrogenase (nifH) gene diversity, Appl Environ Microbiol 70(3), 1455-1465, 2004 Molecular cloning, sequencing, and expression of the genes encoding adenosylcobalamin-dependent diol dehydrase of Klebsiella oxytoca, J Biol Chem 270(13), 7142-7148, 1995 Production of 2,3-butanediol from D-xylose by Klebsiella oxytoca ATCC 8724, Biotechnol Bioeng 26(4), 362-369, 1984 The differentiation of Pseudomonas from other Gram-negative bacteria on the basis of arginine metabolism, J Appl Bacteriol 23, 37-52, 1960 The fermentation of sucrose by Aerobacter aerogenes, Biochem J 41(3), 389-398, 1947 |
| NCIMB number | NCIMB 8017 |
| Deposit type | Bacteria |
| Type strain | No |
| GMO | No |
| Taxon name | Klebsiella oxytoca |
| Preservation method | Lyophilised |
| Preserved as | Klebsiella aerogenes |
| Price band | A |
| Media | 001 |
| Gas regime | aerobic |
| Growth factors (and/or information) | NA, 30C, 24hr: viscid consistency |
| ACDP category | 2 |
| Hazard information | Klebsiella are opportunistic pathogens that can give rise to bacteraemia, pneomonia urinary tract and several other types of human infection. |
| Colony Edge | Entire |
| Colony Surface | Smooth/Shiny |
| Colony Shape | Circular |
| Colony Elevation | Convex |
| Colony Colour | Yellow-White |
| Colony Opacity | Opaque |
| Cellular Shape | Rod |
| Cellular Arrangement | Singly |
| Cellular Motility | No |
| Gram stain | Gram Negative |
| Cellular (Other) | Straight Axis, Parallel Sides, Rounded Ends, Monomorphic |
| Depositor Company | Northern Utilization Research and Development Division |
| Depositor Address | Peoria Illinois U.S.A. |
| Other collection IDs | ATCC8724 BUCSAV143 CCM1901 DSM4798 NCDC380-68 NCIMB8521 NCIMB9901 NRC474 NRRLB-199 PRL-R3 |
| Yeast? | False |
| K12 | No |
| References | Adams G.A. (1946) Can. J. Res. F24 pp1-11 Adams G.A. and Leslie J.D. (1946) Can. J. Res. F24 pp107-116 Freeman G.G. (1947) Biochem J. 41 p389 Freeman G.G. and Morrison R.I. (1947) J. Soc. chem. Ind. 66 p216 Neish A.C. and Simpson F.J. (1954) Can. J. Biochem. Physiol. 32 p147 Altermatt H.A., Simpson F.J. and Neish A.C. (1955) Can. J. Biochem. Physiol. 33 p615 Simpson F.J., Wolin M.J. and Wood W.A. (1958) J. biol. Chem. 230 p457 Wood W.A. and Tai J.V. (1958) Bact. Proc. p99 Eddy B.P. and Kitchell A.G. (1959) J. appl. Bact. 22(1) pp57-63 Thornley M.J. (1960) J. appl. Bact. 23 p37 Wood W.A. , McDonough M.J. and Jacobs L.B. (1961) J. biol. Chem. 236 p2190 Mortlock R.P. and Wood W.A. (1964) J. Bact. 88 p838 Matsushima K. and Simpson F.J. (1965) Can. J. Microbiol. 11 p967 Fossitt D.D., Mortlock R.P. and Wood W.A. (1965) Bact. Proc. p82 Mortlock R.P., Fossitt D.D., Petering D.H. and Wood W.A. (1965) J. Bact. 89 p129 Matsushima K. and Simpson F.J. (1966) Can. J. Microbiol. 12 p313 Hanson T.E. and Anderson R.L. (1966) J. biol. Chem. 241 p1644 Bisson T.M. and Mortlock R.P. (1968) J. Bact. 95 pp925-931 Bisson T.M., Oliver E.J. and Mortlock R.P. (1968) J. Bact. 95 pp932-936 Harrison D.E.F. and Maitra P.K. (1969) Biochem J. 112(5) p647 Brown M.R.W. and Wood S.M. (1971) J. Pharm. Pharmac. 24 pp215-218. Dean A.C.R. et al (1972) Biochem J. 126 15P. Pullulanase synthesis in Klebsiella (Aerobacter) aerogenes Harrison D.E.F. (1972) Biochim. biophys. Acta 275(1) p83. A study of the effect of growth conditions on chemostat-grown K. aerogenes and kinetic changes of a 500nm absorption band. Hernandez E. and Pirt S.J. (1975) J. appl. chem. Biotechnol. 25 pp297-304. Kinetics of utilisation of a highly polymerised carbon source (starch) in a chemostat culture of Klebsiella aerogenes: pullulanase and alpha-amylase activities. (Unknown), Application of bioenergetics to modelling the microbial conversion of D-xylose to 2, 3-butanediol Biotechnol Bioeng 26, 573-582, 1984 (Unknown), Can J Res F 24, 1, 107, 1946 (Unknown), J Appl Bacteriol 22, 57, 1959 (Unknown), J Soc Chem Ind 66, 216, 1947 (Unknown), Production of 2,3-butanediol from D-xylose by Klebsiella oxytoca ATCC 8724 Biotechnol Bioeng 26, 362-369, 1984 Descriptive catalogue of IFO culture collection of bacteria 2, IFO Res Commun 7, 143-145, 1975 The tmRNA website: reductive evolution of tmRNA in plastids and other endosymbionts, Nucleic Acids Res 32(Databaseissue), D104-D108, 2004 Trek Diagnostic Systems, (journal unknown) , Sensititre Application of bioenergetics to modelling the microbial conversion of D-xylose to 2,3-butanediol, Biotechnol Bioeng 26(6), 573-582, 1984 Can, J Res F24, 1, 1946 Characterization, sequencing, and expression of the genes encoding a reactivating factor for glycerol-inactivated adenosylcobalamin-dependent diol dehydratase, J Biol Chem 272(51), 32034-32041, 1997 Complete Genome Sequence of Klebsiella oxytoca KCTC 1686, Used in Production of 2,3-Butanediol, J Bacteriol 194(9), 2371-2372, 2012 Development and testing of a DNA macroarray to assess nitrogenase (nifH) gene diversity, Appl Environ Microbiol 70(3), 1455-1465, 2004 Molecular cloning, sequencing, and expression of the genes encoding adenosylcobalamin-dependent diol dehydrase of Klebsiella oxytoca, J Biol Chem 270(13), 7142-7148, 1995 Production of 2,3-butanediol from D-xylose by Klebsiella oxytoca ATCC 8724, Biotechnol Bioeng 26(4), 362-369, 1984 The differentiation of Pseudomonas from other Gram-negative bacteria on the basis of arginine metabolism, J Appl Bacteriol 23, 37-52, 1960 The fermentation of sucrose by Aerobacter aerogenes, Biochem J 41(3), 389-398, 1947 |