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NCIMB 8642
NCIMB 8642
规格:
货期:
编号:TS384926
品牌:Testobio
NCIMB numberNCIMB 8642
Deposit typeBacteria
Type strainYes
GMONo
Taxon nameCupriavidus oxalaticus
Depositor designationOx1
Preservation methodLyophilised
Preserved asPseudomonas oxalaticus
Other catalogue information"Formerly type strain of PSEUDOMONAS OXALATICUS, RALSTONIA OXALATICA and WAUTERSIA OXALITICUS"
Price bandA
Media001
Gas regimeaerobic
Growth factors (and/or information)Lemco agar, pH7.4, 20C, 4d: moderate growth.
ACDP category1
Additional hazard informationSome members of the genus Alcaligenes are ACDP category 2, but this organism is not a clinical isolate and has no record of causing human infection. However it should be handled with due care.
Colony EdgeEntire
Colony SurfaceSmooth/Shiny
Colony ShapeCircular
Colony ElevationConvex
Colony ColourOff White
Colony OpacityTranslucent
Cellular ShapeOval Rod
Cellular Sizeshort
Cellular ArrangementSingly/Pairs
Cellular MotilityYes
Gram stainGram Negative
Cellular FlagellaPeritrichous
Cellular (Other)Straight Axis, Rounded Ends
Depositor NameJ.V.Bhat
Depositor AddressBangalore India
SourceIntestinal tract of Indian earthworm
Date of Accession01/09/1954
Other collection IDsATCC11883 CCUG2086 DSM1105 IFO13593 LMG2235 RH1081
GenInfo Identifier (EMBL, GenBank & DDBJ)AF155567
Yeast?False
K12No
ReferencesKhambata, S.R. and Bhat, J.V. (1953) J. Bact. 66 p505 Quayle, J.R. and Keech, D.B. (1958) Biochim. biophys. Acta. 29 p223 Quayle, J.R. and Keech, D.B. (1959) Biochim. biophys. Acta. 31 p587 Quayle, J.R. and Keech, D.B. (1959) Nature 183 p1794 Quayle, J.R. and Keech, D.B. (1959) Biochem. J. 72 p623 Quayle, J.R. and Keech, D.B. (1959) Biochem. J. 72 p631 Quayle, J.R. and Keech, D.B. (1960) Biochem. J. 75 p515 Quayle, J.R., Keech, D.B.and Taylor, G.A. (1961) Biochem J. 78 p225 Quayle, J.R. and Taylor, G.A. (1961) Biochem J. 78 p611 Quayle, J.R. and Taylor, G.A. (1962) Zbl. Bakt. Abt. I 182 p393 Quayle, J.R. (1962) Biochim., biophys. Acta. 57 p398 Quayle, J.R. (1963) Biochem J. 87 p368 Quayle, J.R. (1963) J. gen. Microbiol. 32 p163 Quayle J. R. (1964) Biochem J. 89 p492-503 Hopner, T., and Trautwein A. (1971) Arch. Mikrobiol. 77 pp26-35 Blackmore M.A. and Turner J.M. (1971) J. gen. Micro. 67 p243 (number misquoted) Hopner, T. and Knappe, J. (1974) In "Methods of Enzymatic Analysis" H.U. Bergmeyer editor, second english edition translated from the third German edition. pp1551-1555. Academic Press. Blackmore, M. A., Quayle, J.R. and Walker I.O. (1968) Biochem. J. 107 pp699-704. Choice between autotrophy and herterotrophy in Pseudomonas oxalaticus. Growth in mixed substrates. Blackmore, M.A. and Quayle, J.R. (1970) Biochem. J. 118 p53-59. Microbial growth on oxalate by a route not involving glyoxylate carboligase. Dijkhuizen, L.,Wiersma, M. and Harder, W. (1977) Arch. Microbiol. 115 pp229-236. Energy production and growth of Pseudomonas oxalaticus Ox1 on oxalate and formate. Dijkhuizen, L. and Harder, W. (1984) J. gen. Microbiol. 130 p447-457. Regulation of auxotrophic and heterotrophic metabolism in Pseudomonas oxalaticus Ox1. Growth on fructose and mixtures of fructose and formate in batch and continuous cultures. IJSEM (2000) 50 1953 - VL 77 Vaneechoutte M et al (2004) I.J.S.E.M. 54:317-327 Studies on a new oxalate-decomposing bacterium, Pseudomonas oxalaticus, J Bacteriol 66(5), 505-507, 1953 Carbon assimilation by Pseudomonas oxalaticus (OXI). 5. Purification and properties of glyoxylic dehydrogenase, Biochem J 78, 611-615, 1961 Choice between autotrophy and heterotrophy in Pseudomonas oxalaticus. Growth in mixed substrates, Biochem J 107(5), 705-713, 1968 Choice between autotrophy and heterotrophy in Pseudomonas oxalaticus. Utilization of oxalate by cells after adaptation from growth on formate to growth on oxalate, Biochem J 107(5), 699-704, 1968 Comparative phylogenies of Burkholderia, Ralstonia, Comamonas, Brevundimonas and related organisms derived from rpoB, gyrB and rrs gene sequences, Res Microbiol 159(3), 169-177, 2008 Corrigenda to the validation lists, Int J Syst Evol Microbiol 51(5), 1933-1938, 2001 Cupriavidus pampae sp. nov., a novel herbicide-degrading bacterium isolated from agricultural soil, Int J Syst Evol Microbiol 60(11), 2606-2612, 2010 Energy production and growth of Pseudomonas oxalaticus OX1 on oxalate and formate, Arch Microbiol 115, 229-236, 1977 Formation of polyesters consisting of medium-chain-length 3-hydroxyalkanoic acids from gluconate by Pseudomonas aeruginosa and other fluorescent pseudomonads, Appl Environ Microbiol 56, 3360-3367, 1990 Identification of 4-hydroxyvaleric acid as a constituent of biosynthetic polyhydroxyalkanoic acids from bacteria, Appl Microbiol Biotechnol 36, 507-514, 1992 Intra- and intergeneric similarities of Agrobacterium ribosomal ribonucleic acid cistrons, Int J Syst Bacteriol 27, 222-240, 1977 Microbial growth on oxalate by a route not involving glyoxylate carboligase, Biochem J 118, 53-59, 1970 Studies on a New Oxalate-Decomposing Bacterium, Vibrio oxaliticus, J Bacteriol 55(3), 359-368, 1948 Taxonomic position of "Pseudomonas oxalaticus" strain ox14T (DSM 1105T) (Khambata and Bhat, 1953) and its description in the genus Ralstonia as Ralstonia oxalatica comb. nov, Syst Appl Microbiol 23(2), 206-209, 2000 Taxonomy of the genus Cupriavidus: a tale of lost and found, Int J Syst Evol Microbiol 54(6), 2285-2289, 2004 Validation of publication of new names and new combinations previously effectively published outside the IJSEM, Int J Syst Evol Microbiol 50 Pt 6, 1953, 2000 Validation of publication of new names and new combinations previously effectively published outside the IJSEM, Int J Syst Evol Microbiol 51(1), 1-2, 2001 Wautersia gen. nov., a novel genus accommodating the phylogenetic lineage including Ralstonia eutropha and related species, and proposal of Ralstonia [Pseudomonas] syzygii (Roberts et al. 1990) comb. nov, Int J Syst Evol Microbiol 54(2), 317-327, 2004
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NCIMB 8642

  • 货号: TS384926
  • 好评
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  • 品牌 : TESTOBIO
NCIMB numberNCIMB 8642
Deposit typeBacteria
Type strainYes
GMONo
Taxon nameCupriavidus oxalaticus
Depositor designationOx1
Preservation methodLyophilised
Preserved asPseudomonas oxalaticus
Other catalogue information"Formerly type strain of PSEUDOMONAS OXALATICUS, RALSTONIA OXALATICA and WAUTERSIA OXALITICUS"
Price bandA
Media001
Gas regimeaerobic
Growth factors (and/or information)Lemco agar, pH7.4, 20C, 4d: moderate growth.
ACDP category1
Additional hazard informationSome members of the genus Alcaligenes are ACDP category 2, but this organism is not a clinical isolate and has no record of causing human infection. However it should be handled with due care.
Colony EdgeEntire
Colony SurfaceSmooth/Shiny
Colony ShapeCircular
Colony ElevationConvex
Colony ColourOff White
Colony OpacityTranslucent
Cellular ShapeOval Rod
Cellular Sizeshort
Cellular ArrangementSingly/Pairs
Cellular MotilityYes
Gram stainGram Negative
Cellular FlagellaPeritrichous
Cellular (Other)Straight Axis, Rounded Ends
Depositor NameJ.V.Bhat
Depositor AddressBangalore India
SourceIntestinal tract of Indian earthworm
Date of Accession01/09/1954
Other collection IDsATCC11883 CCUG2086 DSM1105 IFO13593 LMG2235 RH1081
GenInfo Identifier (EMBL, GenBank & DDBJ)AF155567
Yeast?False
K12No
ReferencesKhambata, S.R. and Bhat, J.V. (1953) J. Bact. 66 p505 Quayle, J.R. and Keech, D.B. (1958) Biochim. biophys. Acta. 29 p223 Quayle, J.R. and Keech, D.B. (1959) Biochim. biophys. Acta. 31 p587 Quayle, J.R. and Keech, D.B. (1959) Nature 183 p1794 Quayle, J.R. and Keech, D.B. (1959) Biochem. J. 72 p623 Quayle, J.R. and Keech, D.B. (1959) Biochem. J. 72 p631 Quayle, J.R. and Keech, D.B. (1960) Biochem. J. 75 p515 Quayle, J.R., Keech, D.B.and Taylor, G.A. (1961) Biochem J. 78 p225 Quayle, J.R. and Taylor, G.A. (1961) Biochem J. 78 p611 Quayle, J.R. and Taylor, G.A. (1962) Zbl. Bakt. Abt. I 182 p393 Quayle, J.R. (1962) Biochim., biophys. Acta. 57 p398 Quayle, J.R. (1963) Biochem J. 87 p368 Quayle, J.R. (1963) J. gen. Microbiol. 32 p163 Quayle J. R. (1964) Biochem J. 89 p492-503 Hopner, T., and Trautwein A. (1971) Arch. Mikrobiol. 77 pp26-35 Blackmore M.A. and Turner J.M. (1971) J. gen. Micro. 67 p243 (number misquoted) Hopner, T. and Knappe, J. (1974) In "Methods of Enzymatic Analysis" H.U. Bergmeyer editor, second english edition translated from the third German edition. pp1551-1555. Academic Press. Blackmore, M. A., Quayle, J.R. and Walker I.O. (1968) Biochem. J. 107 pp699-704. Choice between autotrophy and herterotrophy in Pseudomonas oxalaticus. Growth in mixed substrates. Blackmore, M.A. and Quayle, J.R. (1970) Biochem. J. 118 p53-59. Microbial growth on oxalate by a route not involving glyoxylate carboligase. Dijkhuizen, L.,Wiersma, M. and Harder, W. (1977) Arch. Microbiol. 115 pp229-236. Energy production and growth of Pseudomonas oxalaticus Ox1 on oxalate and formate. Dijkhuizen, L. and Harder, W. (1984) J. gen. Microbiol. 130 p447-457. Regulation of auxotrophic and heterotrophic metabolism in Pseudomonas oxalaticus Ox1. Growth on fructose and mixtures of fructose and formate in batch and continuous cultures. IJSEM (2000) 50 1953 - VL 77 Vaneechoutte M et al (2004) I.J.S.E.M. 54:317-327 Studies on a new oxalate-decomposing bacterium, Pseudomonas oxalaticus, J Bacteriol 66(5), 505-507, 1953 Carbon assimilation by Pseudomonas oxalaticus (OXI). 5. Purification and properties of glyoxylic dehydrogenase, Biochem J 78, 611-615, 1961 Choice between autotrophy and heterotrophy in Pseudomonas oxalaticus. Growth in mixed substrates, Biochem J 107(5), 705-713, 1968 Choice between autotrophy and heterotrophy in Pseudomonas oxalaticus. Utilization of oxalate by cells after adaptation from growth on formate to growth on oxalate, Biochem J 107(5), 699-704, 1968 Comparative phylogenies of Burkholderia, Ralstonia, Comamonas, Brevundimonas and related organisms derived from rpoB, gyrB and rrs gene sequences, Res Microbiol 159(3), 169-177, 2008 Corrigenda to the validation lists, Int J Syst Evol Microbiol 51(5), 1933-1938, 2001 Cupriavidus pampae sp. nov., a novel herbicide-degrading bacterium isolated from agricultural soil, Int J Syst Evol Microbiol 60(11), 2606-2612, 2010 Energy production and growth of Pseudomonas oxalaticus OX1 on oxalate and formate, Arch Microbiol 115, 229-236, 1977 Formation of polyesters consisting of medium-chain-length 3-hydroxyalkanoic acids from gluconate by Pseudomonas aeruginosa and other fluorescent pseudomonads, Appl Environ Microbiol 56, 3360-3367, 1990 Identification of 4-hydroxyvaleric acid as a constituent of biosynthetic polyhydroxyalkanoic acids from bacteria, Appl Microbiol Biotechnol 36, 507-514, 1992 Intra- and intergeneric similarities of Agrobacterium ribosomal ribonucleic acid cistrons, Int J Syst Bacteriol 27, 222-240, 1977 Microbial growth on oxalate by a route not involving glyoxylate carboligase, Biochem J 118, 53-59, 1970 Studies on a New Oxalate-Decomposing Bacterium, Vibrio oxaliticus, J Bacteriol 55(3), 359-368, 1948 Taxonomic position of "Pseudomonas oxalaticus" strain ox14T (DSM 1105T) (Khambata and Bhat, 1953) and its description in the genus Ralstonia as Ralstonia oxalatica comb. nov, Syst Appl Microbiol 23(2), 206-209, 2000 Taxonomy of the genus Cupriavidus: a tale of lost and found, Int J Syst Evol Microbiol 54(6), 2285-2289, 2004 Validation of publication of new names and new combinations previously effectively published outside the IJSEM, Int J Syst Evol Microbiol 50 Pt 6, 1953, 2000 Validation of publication of new names and new combinations previously effectively published outside the IJSEM, Int J Syst Evol Microbiol 51(1), 1-2, 2001 Wautersia gen. nov., a novel genus accommodating the phylogenetic lineage including Ralstonia eutropha and related species, and proposal of Ralstonia [Pseudomonas] syzygii (Roberts et al. 1990) comb. nov, Int J Syst Evol Microbiol 54(2), 317-327, 2004
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