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NCIMB 12577
NCIMB 12577
规格:
货期:
编号:TS388644
品牌:Testobio
NCIMB numberNCIMB 12577
Deposit typeBacteria
Type strainNo
GMONo
Taxon nameShewanella putrefaciens
Depositor designation200
Preservation methodLyophilised
Other catalogue informationCauses corrosion of mild steel. Shows sulphur isotope fractionation
Price bandA
Media001
Gas regimeaerobic
Growth factors (and/or information)No growth on Medium 282 CM3, 25C, 2d: good growth, central depression, 27d - 1mm
ACDP category1
Colony EdgeEntire
Colony SurfaceSlightly < Shiny
Colony ShapeCircular
Colony ElevationRaised
Colony ColourSlightly Pinky Brown
Colony OpacityTranslucent
Cellular ShapeRod
Gram stainGram Negative
Depositor NameD.W.S. Westlake
Depositor CompanyUniversity of Alberta
Depositor AddressDepartment of Microbiology Edmonton Alberta Canada
Source"Crude oil, Pembina oil field, Alberta, Canada"
Isolated byC.O. Obuekwe
Date of Accession03/11/1987
HistoryC.O.Obuekwe
Yeast?False
K12No
ReferencesObuekwe 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
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NCIMB 12577

  • 货号: TS388644
  • 好评
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  • 品牌 : TESTOBIO
NCIMB numberNCIMB 12577
Deposit typeBacteria
Type strainNo
GMONo
Taxon nameShewanella putrefaciens
Depositor designation200
Preservation methodLyophilised
Other catalogue informationCauses corrosion of mild steel. Shows sulphur isotope fractionation
Price bandA
Media001
Gas regimeaerobic
Growth factors (and/or information)No growth on Medium 282 CM3, 25C, 2d: good growth, central depression, 27d - 1mm
ACDP category1
Colony EdgeEntire
Colony SurfaceSlightly < Shiny
Colony ShapeCircular
Colony ElevationRaised
Colony ColourSlightly Pinky Brown
Colony OpacityTranslucent
Cellular ShapeRod
Gram stainGram Negative
Depositor NameD.W.S. Westlake
Depositor CompanyUniversity of Alberta
Depositor AddressDepartment of Microbiology Edmonton Alberta Canada
Source"Crude oil, Pembina oil field, Alberta, Canada"
Isolated byC.O. Obuekwe
Date of Accession03/11/1987
HistoryC.O.Obuekwe
Yeast?False
K12No
ReferencesObuekwe 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
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