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NCIMB 11358
NCIMB 11358
规格:
货期:
编号:TS388342
品牌:Testobio
NCIMB numberNCIMB 11358
Deposit typeBacteria
Type strainYes
GMONo
Taxon namePseudomonas stutzeri
Depositor designationLautropAB201 Stanier221
Preservation methodLyophilised
Price bandA
Media001
Gas regimeaerobic
Incubation period2 days
Growth factors (and/or information)Growth at 30C and 37C CM3, 25C, 1-2d: colony variation examined in response to customer query, 3 types - size variation
ACDP category1
Additional hazard informationThis strain was isolated from a clinical specimen.
Colony EdgeEntire
Colony SurfaceSmooth
Colony ShapeCircular
Colony ElevationFlat
Colony ColourOff White
Colony OpacityTranslucent
Cellular ShapeRod
Cellular Sizemedium
Cellular ArrangementSingly
Cellular MotilityYes
Gram stainGram Negative
Cellular (Other)Straight And Parallel Sides, Rounded Ends
Depositor CompanyAmerican Type Culture Collection (ATCC)
Depositor Address12301 Parklawn Drive Rockville Maryland 20852 U.S.A.
SourceSpinal fluid
Isolated byH.Lautrop
Date of Accession24/08/1977
HistoryR.Y.Stanier -- H.Lautrop
Other collection IDsATCC17588 CIP103022 DSM5190 IAM12668 IFO14165 NCPPB1973
Yeast?False
K12No
ReferencesJ. gen. Microbiol. (1966) 43 pp159-312 J. gen. Microbiol. (1970) 60 pp215-231 Tattawasart U et al (1999) J appl. Micro. 87, 323-331 IJSEM (2002) 52:1500 IJSEM (2005) 55:1541-1544 The tmRNA website: reductive evolution of tmRNA in plastids and other endosymbionts, Nucleic Acids Res 32(Databaseissue), D104-D108, 2004 (Unknown), Int J Syst Bacteriol 30, 354, 1980 Approved Lists of Bacterial Names, Int J Syst Bacteriol 30, 225-420, 1980 The relationship of nitrate reducing bacteria on the basis of narH gene sequences and comparison of narH and 16S rDNA based phylogeny, Syst Appl Microbiol 23(1), 47-57, 2000 American Type Culture Collection, Catalogue of strains I, 15th ed., 1982, American Type Culture Collection , 1982 Accumulation of poly(3-hydroxybutyrate) from octanoate in different pseudomonas belonging to the rRNA homology group I, Syst Appl Microbiol 25(2), 183-188, 2002 Evaluation of oprI and oprL genes as molecular markers for the genus Pseudomonas and their use in studying the biodiversity of a small Belgian River, Res Microbiol 164(3), 254-261, 2013 The phylogeny of the genera Chryseomonas, Flavimonas, and Pseudomonas supports synonymy of these three genera, Int J Syst Bacteriol 47(2), 249-251, 1997 Phylogeny of the genus Pseudomonas: intrageneric structure reconstructed from the nucleotide sequences of gyrB and rpoD genes, Microbiology 146 ( Pt 10), 2385-2394, 2000 Improved resolution on the phylogenetic relationships among Pseudomonasby the combined analysis of atpD, carA, recA and 16S rDNA, Antonie Van Leeuwenhoek 86(1), 51-64, 2004 16S rRNA gene sequence analysis relative to genomovars of Pseudomonas stutzeri and proposal of Pseudomonas balearica sp. nov, Int J Syst Bacteriol 46(1), 200-205, 1996 Arsenate detoxification in a Pseudomonad hypertolerant to arsenic, Arch Microbiol 187(3), 171-183, 2007 Classification of genus Pseudomonas by MALDI-TOF MS based on ribosomal protein coding in S10-spc-alpha operon at strain level, J Proteome Res 9(12), 6722-6728, 2010 Comparative genetic diversity of Pseudomonas stutzeri genomovars, clonal structure, and phylogeny of the species, J Bacteriol 186(16), 5239-5248, 2004 Complete Genome Sequence of the Type Strain Pseudomonas stutzeri CGMCC 1.1803, J Bacteriol 193(21), 6095, 2011 Enterolysin A, a cell wall-degrading bacteriocin from Enterococcus faecalis LMG 2333, Appl Environ Microbiol 69(5), 2975-2984, 2003 Genotypic and phenotypic diversity of Pseudomonas stutzeri, Syst Appl Microbiol 14, 150-157, 1991 High-frequency electroporation and maintenance of pUC- and pBR-based cloning vectors in Pseudomonas stutzeri, Curr Microbiol 25(1), 25-29, 1992 Natural and engineered hydroxyectoine production based on the Pseudomonas stutzeri ectABCD-ask gene cluster, Appl Environ Microbiol 77(4), 1368-1374, 2011 Reductive catabolism of pyrimidine bases by Pseudomonas stutzeri, J Gen Microbiol 138, 2459-2463, 1992 Regulation of the hemA gene during 5-aminolevulinic acid formation in Pseudomonas aeruginosa, J Bacteriol 177(6), 1435-1443, 1995 Taxonomy of the aerobic pseudomonads: the properties of the Pseudomonas stutzeri group, J Gen Microbiol 60(2), 215-231, 1970 The potential for intraspecific horizontal gene exchange by natural genetic transformation: sexual isolation among genomovars of Pseudomonas stutzeri, Microbiology 146 Pt 12, 3081-3090, 2000 The rice inoculant strain Alcaligenes faecalis A15 is a nitrogen-fixing Pseudomonas stutzeri, Syst Appl Microbiol 22(2), 215-224, 1999 Utility of internally transcribed 16S-23S rDNA spacer regions for the definition of Pseudomonas stutzeri genomovars and other Pseudomonas species, Int J Syst Evol Microbiol 50 Pt 4, 1629-1639, 2000
PubMed Publicationhttps://www.ncbi.nlm.nih.gov/m/pubmed/10540232
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NCIMB 11358

  • 货号: TS388342
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  • 品牌 : TESTOBIO
NCIMB numberNCIMB 11358
Deposit typeBacteria
Type strainYes
GMONo
Taxon namePseudomonas stutzeri
Depositor designationLautropAB201 Stanier221
Preservation methodLyophilised
Price bandA
Media001
Gas regimeaerobic
Incubation period2 days
Growth factors (and/or information)Growth at 30C and 37C CM3, 25C, 1-2d: colony variation examined in response to customer query, 3 types - size variation
ACDP category1
Additional hazard informationThis strain was isolated from a clinical specimen.
Colony EdgeEntire
Colony SurfaceSmooth
Colony ShapeCircular
Colony ElevationFlat
Colony ColourOff White
Colony OpacityTranslucent
Cellular ShapeRod
Cellular Sizemedium
Cellular ArrangementSingly
Cellular MotilityYes
Gram stainGram Negative
Cellular (Other)Straight And Parallel Sides, Rounded Ends
Depositor CompanyAmerican Type Culture Collection (ATCC)
Depositor Address12301 Parklawn Drive Rockville Maryland 20852 U.S.A.
SourceSpinal fluid
Isolated byH.Lautrop
Date of Accession24/08/1977
HistoryR.Y.Stanier -- H.Lautrop
Other collection IDsATCC17588 CIP103022 DSM5190 IAM12668 IFO14165 NCPPB1973
Yeast?False
K12No
ReferencesJ. gen. Microbiol. (1966) 43 pp159-312 J. gen. Microbiol. (1970) 60 pp215-231 Tattawasart U et al (1999) J appl. Micro. 87, 323-331 IJSEM (2002) 52:1500 IJSEM (2005) 55:1541-1544 The tmRNA website: reductive evolution of tmRNA in plastids and other endosymbionts, Nucleic Acids Res 32(Databaseissue), D104-D108, 2004 (Unknown), Int J Syst Bacteriol 30, 354, 1980 Approved Lists of Bacterial Names, Int J Syst Bacteriol 30, 225-420, 1980 The relationship of nitrate reducing bacteria on the basis of narH gene sequences and comparison of narH and 16S rDNA based phylogeny, Syst Appl Microbiol 23(1), 47-57, 2000 American Type Culture Collection, Catalogue of strains I, 15th ed., 1982, American Type Culture Collection , 1982 Accumulation of poly(3-hydroxybutyrate) from octanoate in different pseudomonas belonging to the rRNA homology group I, Syst Appl Microbiol 25(2), 183-188, 2002 Evaluation of oprI and oprL genes as molecular markers for the genus Pseudomonas and their use in studying the biodiversity of a small Belgian River, Res Microbiol 164(3), 254-261, 2013 The phylogeny of the genera Chryseomonas, Flavimonas, and Pseudomonas supports synonymy of these three genera, Int J Syst Bacteriol 47(2), 249-251, 1997 Phylogeny of the genus Pseudomonas: intrageneric structure reconstructed from the nucleotide sequences of gyrB and rpoD genes, Microbiology 146 ( Pt 10), 2385-2394, 2000 Improved resolution on the phylogenetic relationships among Pseudomonasby the combined analysis of atpD, carA, recA and 16S rDNA, Antonie Van Leeuwenhoek 86(1), 51-64, 2004 16S rRNA gene sequence analysis relative to genomovars of Pseudomonas stutzeri and proposal of Pseudomonas balearica sp. nov, Int J Syst Bacteriol 46(1), 200-205, 1996 Arsenate detoxification in a Pseudomonad hypertolerant to arsenic, Arch Microbiol 187(3), 171-183, 2007 Classification of genus Pseudomonas by MALDI-TOF MS based on ribosomal protein coding in S10-spc-alpha operon at strain level, J Proteome Res 9(12), 6722-6728, 2010 Comparative genetic diversity of Pseudomonas stutzeri genomovars, clonal structure, and phylogeny of the species, J Bacteriol 186(16), 5239-5248, 2004 Complete Genome Sequence of the Type Strain Pseudomonas stutzeri CGMCC 1.1803, J Bacteriol 193(21), 6095, 2011 Enterolysin A, a cell wall-degrading bacteriocin from Enterococcus faecalis LMG 2333, Appl Environ Microbiol 69(5), 2975-2984, 2003 Genotypic and phenotypic diversity of Pseudomonas stutzeri, Syst Appl Microbiol 14, 150-157, 1991 High-frequency electroporation and maintenance of pUC- and pBR-based cloning vectors in Pseudomonas stutzeri, Curr Microbiol 25(1), 25-29, 1992 Natural and engineered hydroxyectoine production based on the Pseudomonas stutzeri ectABCD-ask gene cluster, Appl Environ Microbiol 77(4), 1368-1374, 2011 Reductive catabolism of pyrimidine bases by Pseudomonas stutzeri, J Gen Microbiol 138, 2459-2463, 1992 Regulation of the hemA gene during 5-aminolevulinic acid formation in Pseudomonas aeruginosa, J Bacteriol 177(6), 1435-1443, 1995 Taxonomy of the aerobic pseudomonads: the properties of the Pseudomonas stutzeri group, J Gen Microbiol 60(2), 215-231, 1970 The potential for intraspecific horizontal gene exchange by natural genetic transformation: sexual isolation among genomovars of Pseudomonas stutzeri, Microbiology 146 Pt 12, 3081-3090, 2000 The rice inoculant strain Alcaligenes faecalis A15 is a nitrogen-fixing Pseudomonas stutzeri, Syst Appl Microbiol 22(2), 215-224, 1999 Utility of internally transcribed 16S-23S rDNA spacer regions for the definition of Pseudomonas stutzeri genomovars and other Pseudomonas species, Int J Syst Evol Microbiol 50 Pt 4, 1629-1639, 2000
PubMed Publicationhttps://www.ncbi.nlm.nih.gov/m/pubmed/10540232
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