| NCIMB number | NCIMB 12577 |
| Deposit type | Bacteria |
| Type strain | No |
| GMO | No |
| Taxon name | Shewanella putrefaciens |
| Depositor designation | 200 |
| Preservation method | Lyophilised |
| Other catalogue information | Causes corrosion of mild steel. Shows sulphur isotope fractionation |
| Price band | A |
| Media | 001 |
| Gas regime | aerobic |
| Growth factors (and/or information) | No growth on Medium 282 CM3, 25C, 2d: good growth, central depression, 27d - 1mm |
| ACDP category | 1 |
| Colony Edge | Entire |
| Colony Surface | Slightly < Shiny |
| Colony Shape | Circular |
| Colony Elevation | Raised |
| Colony Colour | Slightly Pinky Brown |
| Colony Opacity | Translucent |
| Cellular Shape | Rod |
| Gram stain | Gram Negative |
| Depositor Name | D.W.S. Westlake |
| Depositor Company | University of Alberta |
| Depositor Address | Department of Microbiology Edmonton Alberta Canada |
| Source | "Crude oil, Pembina oil field, Alberta, Canada" |
| Isolated by | C.O. Obuekwe |
| Date of Accession | 03/11/1987 |
| History | C.O.Obuekwe |
| Yeast? | False |
| K12 | No |
| References | Obuekwe C.O., Westlake D.W.S. and Cook F.D.(1981) Can. J. Microbiol. 27 pp692-697. Effect of nitrate on reduction of ferric iron by a bacterium isolated from crude oil. Obuekwe C.O., Westlake D.W.S., Cook F.D. and Costerton J.W. (1981) Appl. Envir. Microbiol. 41 pp766-774. Surface changes in mild steel coupons from the action of corrosion-causing bacteria. Obuekwe C.O., Westlake D.W.S., Plambeck J.A. and Cook F.D. (1981) Corrosion 37 pp461-467. Corrosion of mild steel in cultures of ferric-iron-reducing bacterium isolated from crude oil. I. Polarization characteristics. Obuekwe C.O., Westlake D.W.S., Plambeck J.A. and Cook F.D. (1981) Corrosion 37 pp632-637. Corrosion of mild steel in cultures of ferric-iron-reducing bacterium isolated from crude oil. II. Mechanism of anodic depolarization. Obuekwe C.O. and Westlake D.W.S. (1982) Can. J. Microbiol. 28 pp989-992. Effect of medium composition on cell pigmentation, cytochrome content and ferric iron reduction in a Pseudomonas sp. isolated from crude oil. Obuekwe C.O. and Westlake D.W.S. (1982) Microbios Letters 19 pp57-62. Effect of reducible compounds (potential electron acceptors) on reduction of ferric iron by Pseudomonas species. Arnold R.G., DiChristina T.J. and Hoffman M.R. (1986) Appl. Environ. Microbiol. 52 pp281-289. Inhibitor studies of dissimilative Fe(III) reduction by a Pseudomonas sp. strain 200 ("Pseudomonas ferrireductans") Arnold R.G., Olson T.M. and Hoffman M.R. (1986) Biotech. Bioeng. 28 pp1657-1671. Kinetics and mechanism of dissimilative Fe(III) reduction by Pseudomonas sp. 200 Westlake D.W.S., Semple K.M. and Obuekwe C.O. (1986) Corrosion by ferric iron-reducing bacteria isolated from oil production systems. In: Biologically Induced Corrosion. Edited by: S.C. Dexter. National Association of Corrosion Engineers., Houston, Tx. pp193-200 Semple K.M. and Westlake D.W.S. (1987) Can. J. Microbiol. 33 pp366-371. Characterisation of iron reducing Alteromonas putrefaciens strains isolated from crude oil field fluids. Semple K.M. and Westlake D.W.S. (1987) Can J. Microbiol. 33 pp372-376. Sulfur isotope fractionation by strains of Alteromonas putrefaciens isolated from oil field fluids. Obuekwe C.O., Westlake D.W.S. and Plambeck J.A. (1987) Appl. Microbiol. Biotechnol. 26 pp294-298. Bacterial corrosion of mild steel under the condition of simultaneous formation of ferrous and sulphide ions. Obuekwe C.O., Westlake D.W.S. and Plambeck J.A. (1987) Can. J. Microbiol. 33 pp272-275. Evidence that available energy is a limiting factor in the bacterial corrosion of mild steel by a Pseudomonas sp. Differentiation of Shewanella putrefaciens and Shewanella alga on the basis of whole-cell protein profiles, ribotyping, phenotypic characterization, and 16S rRNA gene sequence analysis, Appl Environ Microbiol 63(6), 2189-2199, 1997 A conserved histidine in cytochrome c maturation permease CcmB of Shewanella putrefaciens is required for anaerobic growth below a threshold standard redox potential., J Bacteriol 189(3), 1036-1043, 2007 Dissimilatory Fe(III) and Mn(IV) reduction by Shewanella putrefaciens requires ferE, a homolog of the pulE (gspE) type II protein secretion gene, J Bacteriol 184(1), 142-151, 2002 Effects of electron donor and acceptor conditions on reductive dehalogenation of tetrachloromethane by Shewanella putrefaciens 200, Appl Environ Microbiol 61(1), 8-12, 1995 Involvement of cytochromes in the anaerobic biotransformation of tetrachloromethane by Shewanella putrefaciens 200, Appl Environ Microbiol 59(11), 3763-3770, 1993 |
| NCIMB number | NCIMB 12577 |
| Deposit type | Bacteria |
| Type strain | No |
| GMO | No |
| Taxon name | Shewanella putrefaciens |
| Depositor designation | 200 |
| Preservation method | Lyophilised |
| Other catalogue information | Causes corrosion of mild steel. Shows sulphur isotope fractionation |
| Price band | A |
| Media | 001 |
| Gas regime | aerobic |
| Growth factors (and/or information) | No growth on Medium 282 CM3, 25C, 2d: good growth, central depression, 27d - 1mm |
| ACDP category | 1 |
| Colony Edge | Entire |
| Colony Surface | Slightly < Shiny |
| Colony Shape | Circular |
| Colony Elevation | Raised |
| Colony Colour | Slightly Pinky Brown |
| Colony Opacity | Translucent |
| Cellular Shape | Rod |
| Gram stain | Gram Negative |
| Depositor Name | D.W.S. Westlake |
| Depositor Company | University of Alberta |
| Depositor Address | Department of Microbiology Edmonton Alberta Canada |
| Source | "Crude oil, Pembina oil field, Alberta, Canada" |
| Isolated by | C.O. Obuekwe |
| Date of Accession | 03/11/1987 |
| History | C.O.Obuekwe |
| Yeast? | False |
| K12 | No |
| References | Obuekwe C.O., Westlake D.W.S. and Cook F.D.(1981) Can. J. Microbiol. 27 pp692-697. Effect of nitrate on reduction of ferric iron by a bacterium isolated from crude oil. Obuekwe C.O., Westlake D.W.S., Cook F.D. and Costerton J.W. (1981) Appl. Envir. Microbiol. 41 pp766-774. Surface changes in mild steel coupons from the action of corrosion-causing bacteria. Obuekwe C.O., Westlake D.W.S., Plambeck J.A. and Cook F.D. (1981) Corrosion 37 pp461-467. Corrosion of mild steel in cultures of ferric-iron-reducing bacterium isolated from crude oil. I. Polarization characteristics. Obuekwe C.O., Westlake D.W.S., Plambeck J.A. and Cook F.D. (1981) Corrosion 37 pp632-637. Corrosion of mild steel in cultures of ferric-iron-reducing bacterium isolated from crude oil. II. Mechanism of anodic depolarization. Obuekwe C.O. and Westlake D.W.S. (1982) Can. J. Microbiol. 28 pp989-992. Effect of medium composition on cell pigmentation, cytochrome content and ferric iron reduction in a Pseudomonas sp. isolated from crude oil. Obuekwe C.O. and Westlake D.W.S. (1982) Microbios Letters 19 pp57-62. Effect of reducible compounds (potential electron acceptors) on reduction of ferric iron by Pseudomonas species. Arnold R.G., DiChristina T.J. and Hoffman M.R. (1986) Appl. Environ. Microbiol. 52 pp281-289. Inhibitor studies of dissimilative Fe(III) reduction by a Pseudomonas sp. strain 200 ("Pseudomonas ferrireductans") Arnold R.G., Olson T.M. and Hoffman M.R. (1986) Biotech. Bioeng. 28 pp1657-1671. Kinetics and mechanism of dissimilative Fe(III) reduction by Pseudomonas sp. 200 Westlake D.W.S., Semple K.M. and Obuekwe C.O. (1986) Corrosion by ferric iron-reducing bacteria isolated from oil production systems. In: Biologically Induced Corrosion. Edited by: S.C. Dexter. National Association of Corrosion Engineers., Houston, Tx. pp193-200 Semple K.M. and Westlake D.W.S. (1987) Can. J. Microbiol. 33 pp366-371. Characterisation of iron reducing Alteromonas putrefaciens strains isolated from crude oil field fluids. Semple K.M. and Westlake D.W.S. (1987) Can J. Microbiol. 33 pp372-376. Sulfur isotope fractionation by strains of Alteromonas putrefaciens isolated from oil field fluids. Obuekwe C.O., Westlake D.W.S. and Plambeck J.A. (1987) Appl. Microbiol. Biotechnol. 26 pp294-298. Bacterial corrosion of mild steel under the condition of simultaneous formation of ferrous and sulphide ions. Obuekwe C.O., Westlake D.W.S. and Plambeck J.A. (1987) Can. J. Microbiol. 33 pp272-275. Evidence that available energy is a limiting factor in the bacterial corrosion of mild steel by a Pseudomonas sp. Differentiation of Shewanella putrefaciens and Shewanella alga on the basis of whole-cell protein profiles, ribotyping, phenotypic characterization, and 16S rRNA gene sequence analysis, Appl Environ Microbiol 63(6), 2189-2199, 1997 A conserved histidine in cytochrome c maturation permease CcmB of Shewanella putrefaciens is required for anaerobic growth below a threshold standard redox potential., J Bacteriol 189(3), 1036-1043, 2007 Dissimilatory Fe(III) and Mn(IV) reduction by Shewanella putrefaciens requires ferE, a homolog of the pulE (gspE) type II protein secretion gene, J Bacteriol 184(1), 142-151, 2002 Effects of electron donor and acceptor conditions on reductive dehalogenation of tetrachloromethane by Shewanella putrefaciens 200, Appl Environ Microbiol 61(1), 8-12, 1995 Involvement of cytochromes in the anaerobic biotransformation of tetrachloromethane by Shewanella putrefaciens 200, Appl Environ Microbiol 59(11), 3763-3770, 1993 |