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NCIMB 8510
NCIMB 8510
规格:
货期:
编号:TS388706
品牌:Testobio
NCIMB numberNCIMB 8510
Deposit typeBacteria
Type strainYes
GMONo
Taxon nameStreptococcus thermophilus
Depositor designationB of R
Preservation methodLyophilised
Preserved asStreptococcus salivorius subsp. thermophilus
Other catalogue informationDoes not grow at 50C
Price bandA
Media079441
Gas regimeaerobic
Growth factors (and/or information)BA, 37C, 24hr: no haemolysis but beta haemolytic when incubated anaerobically
ACDP category1
Colony EdgeEntire
Colony SurfaceSmooth/Shiny
Colony ShapeCircular/Slightly Irregular
Colony ElevationLow Convex
Colony ColourOff White
Colony OpacitySemi-Opaque
Cellular ShapeCoccus
Cellular Sizesmall-medium
Cellular ArrangementShort/Medium Chains
Cellular MotilityNo
Gram stainGram Positive
Depositor NameA.T.R.Mattick
Depositor Address
SourcePasteurized milk
Isolated byP.M.F.Shattock
Date of Isolation01/01/1947
Date of Accession01/05/1952
HistoryP.M.F.Shattock
Other collection IDsATCC19258 CECT986 CIP102303 DSM20617 NCDO573 NBRC111149
Yeast?False
K12No
ReferencesFurrow J.A.E. and Collins M.D. (1984) J. gen. Microbiol. 130 p357 Schleifer K.H. et al (1991) Syst. appl. Microbiol. 14 pp386-388 Midwinter R. and Pritchard G.G. (1994) J. appl. Bact. 77(3) pp288-295 Int. J. syst. Bact. (1995) 54 p619 J Appl Micro (1998) 85, 25-36 IJSEM (2002) 52:1785-86 (Unknown), J Clin Microbiol 33, 1300, 1995 Utilization of tmRNA sequences for bacterial identification, BMC Microbiol 1, 20, 2001 cpnDB: a chaperonin sequence database, Genome Res 14(8), 1669-1675, 2004 Complete 23S ribosomal RNA sequences of Gram-positive Bacteria with a low DNA G+C content, Syst Appl Microbiol 15, 487-501, 1992 16S-23S and 23S-5S intergenic spacer regions of Streptococcus thermophilus and Streptococcus salivarius, primary and secondary structure, Curr Microbiol 31(5), 270-278, 1995 Aminopeptidase N from Streptococcus salivarius subsp. thermophilus NCDO 573: purification and properties, J Appl Bacteriol 77(3), 288-295, 1994 Application of multilocus sequence analysis (MLSA) for rapid identification of Enterococcus species based on rpoA and pheS genes, Microbiology 151(7), 2141-2150, 2005 Array-based identification of species of the genera Abiotrophia, Enterococcus, Granulicatella, and Streptococcus, J Clin Microbiol 44(12), 4414-4424, 2006 Easy DNA extraction method and optimisation of PCR-Temporal Temperature Gel Electrophoresis to identify the predominant high and low GC-content bacteria from dairy products, J Microbiol Methods 69(3), 431-441, 2007 Evolution of genomic islands by deletion and tandem accretion by site-specific recombination: ICESt1-related elements from Streptococcus thermophilus, Microbiology (Reading, Engl) 50(4), 759-774, 2004 Genetic and biochemical characterization of the phosphoenolpyruvate:glucose/mannose phosphotransferase system of Streptococcus thermophilus, Appl Environ Microbiol 69(9), 5423-5432, 2003 High genetic variability of the Streptococcus thermophilus cse central part, a repeat rich region required for full cell segregation activity, Antonie Van Leeuwenhoek 90(3), 245-255, 2006 Identification of streptococci to species level by sequencing the gene encoding the manganese-dependent superoxide dismutase, J Clin Microbiol 36(1), 41-47, 1998 Oral streptococcal bacteremia in hospitalized patients: taxonomic identification and clinical characterization, J Clin Microbiol 50(3), 1039-1042, 2012 Partial recN gene sequencing: a new tool for identification and phylogeny within the genus Streptococcus, Int J Syst Evol Microbiol 60(9), 2140-2148, 2010 Partial sequence comparison of the rpoB, sodA, groEL and gyrB genes within the genus Streptococcus, Int J Syst Evol Microbiol 59(9), 2317-2322, 2009 Phylogenetic relationships and genotyping of the genus Streptococcus by sequence determination of the RNase P RNA gene, rnpB, Int J Syst Evol Microbiol 53(6), 1861-1871, 2003 Phylogeny and identification of Enterococci by atpA gene sequence analysis, J Clin Microbiol 43(5), 2224-2230, 2005 Proline biosynthesis in Streptococcus thermophilus: characterization of the proBA operon and its products, Microbiology 142 ( Pt 11), 3275-3282, 1996 Revival of the species Streptococcus thermophilus (ex Orla-Jensen, 1919) nom. rev, Syst Appl Microbiol 14, 386-388, 1991 Sequence heterogeneity in the lacSZ operon of Streptococcus thermophilus and its use in PCR systems for strain differentiation, Res Microbiol 156(2), 161-172, 2005 The doubly phosphorylated form of HPr, HPr(Ser~P)(His-P), is abundant in exponentially growing cells of Streptococcus thermophilus and phosphorylates the lactose transporter LacS as efficiently as HPr(His~P), Appl Environ Microbiol 71(3), 1364-1372, 2005 The relevance of carbon dioxide metabolism in Streptococcus thermophilus, Microbiology (Reading, Engl) 155(6), 1953-1965, 2009 The rpoB gene as a target for PCR-DGGE analysis to follow lactic acid bacterial population dynamics during food fermentations, Food Microbiol 21(4), 481-487, 2004 Validation of the publication of new names and new combinations previously effectively published outside the IJSB. List No. 54, Int J Syst Bacteriol 45, 619-620, 1995
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NCIMB 8510

  • 货号: TS388706
  • 好评
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  • 品牌 : TESTOBIO
NCIMB numberNCIMB 8510
Deposit typeBacteria
Type strainYes
GMONo
Taxon nameStreptococcus thermophilus
Depositor designationB of R
Preservation methodLyophilised
Preserved asStreptococcus salivorius subsp. thermophilus
Other catalogue informationDoes not grow at 50C
Price bandA
Media079441
Gas regimeaerobic
Growth factors (and/or information)BA, 37C, 24hr: no haemolysis but beta haemolytic when incubated anaerobically
ACDP category1
Colony EdgeEntire
Colony SurfaceSmooth/Shiny
Colony ShapeCircular/Slightly Irregular
Colony ElevationLow Convex
Colony ColourOff White
Colony OpacitySemi-Opaque
Cellular ShapeCoccus
Cellular Sizesmall-medium
Cellular ArrangementShort/Medium Chains
Cellular MotilityNo
Gram stainGram Positive
Depositor NameA.T.R.Mattick
Depositor Address
SourcePasteurized milk
Isolated byP.M.F.Shattock
Date of Isolation01/01/1947
Date of Accession01/05/1952
HistoryP.M.F.Shattock
Other collection IDsATCC19258 CECT986 CIP102303 DSM20617 NCDO573 NBRC111149
Yeast?False
K12No
ReferencesFurrow J.A.E. and Collins M.D. (1984) J. gen. Microbiol. 130 p357 Schleifer K.H. et al (1991) Syst. appl. Microbiol. 14 pp386-388 Midwinter R. and Pritchard G.G. (1994) J. appl. Bact. 77(3) pp288-295 Int. J. syst. Bact. (1995) 54 p619 J Appl Micro (1998) 85, 25-36 IJSEM (2002) 52:1785-86 (Unknown), J Clin Microbiol 33, 1300, 1995 Utilization of tmRNA sequences for bacterial identification, BMC Microbiol 1, 20, 2001 cpnDB: a chaperonin sequence database, Genome Res 14(8), 1669-1675, 2004 Complete 23S ribosomal RNA sequences of Gram-positive Bacteria with a low DNA G+C content, Syst Appl Microbiol 15, 487-501, 1992 16S-23S and 23S-5S intergenic spacer regions of Streptococcus thermophilus and Streptococcus salivarius, primary and secondary structure, Curr Microbiol 31(5), 270-278, 1995 Aminopeptidase N from Streptococcus salivarius subsp. thermophilus NCDO 573: purification and properties, J Appl Bacteriol 77(3), 288-295, 1994 Application of multilocus sequence analysis (MLSA) for rapid identification of Enterococcus species based on rpoA and pheS genes, Microbiology 151(7), 2141-2150, 2005 Array-based identification of species of the genera Abiotrophia, Enterococcus, Granulicatella, and Streptococcus, J Clin Microbiol 44(12), 4414-4424, 2006 Easy DNA extraction method and optimisation of PCR-Temporal Temperature Gel Electrophoresis to identify the predominant high and low GC-content bacteria from dairy products, J Microbiol Methods 69(3), 431-441, 2007 Evolution of genomic islands by deletion and tandem accretion by site-specific recombination: ICESt1-related elements from Streptococcus thermophilus, Microbiology (Reading, Engl) 50(4), 759-774, 2004 Genetic and biochemical characterization of the phosphoenolpyruvate:glucose/mannose phosphotransferase system of Streptococcus thermophilus, Appl Environ Microbiol 69(9), 5423-5432, 2003 High genetic variability of the Streptococcus thermophilus cse central part, a repeat rich region required for full cell segregation activity, Antonie Van Leeuwenhoek 90(3), 245-255, 2006 Identification of streptococci to species level by sequencing the gene encoding the manganese-dependent superoxide dismutase, J Clin Microbiol 36(1), 41-47, 1998 Oral streptococcal bacteremia in hospitalized patients: taxonomic identification and clinical characterization, J Clin Microbiol 50(3), 1039-1042, 2012 Partial recN gene sequencing: a new tool for identification and phylogeny within the genus Streptococcus, Int J Syst Evol Microbiol 60(9), 2140-2148, 2010 Partial sequence comparison of the rpoB, sodA, groEL and gyrB genes within the genus Streptococcus, Int J Syst Evol Microbiol 59(9), 2317-2322, 2009 Phylogenetic relationships and genotyping of the genus Streptococcus by sequence determination of the RNase P RNA gene, rnpB, Int J Syst Evol Microbiol 53(6), 1861-1871, 2003 Phylogeny and identification of Enterococci by atpA gene sequence analysis, J Clin Microbiol 43(5), 2224-2230, 2005 Proline biosynthesis in Streptococcus thermophilus: characterization of the proBA operon and its products, Microbiology 142 ( Pt 11), 3275-3282, 1996 Revival of the species Streptococcus thermophilus (ex Orla-Jensen, 1919) nom. rev, Syst Appl Microbiol 14, 386-388, 1991 Sequence heterogeneity in the lacSZ operon of Streptococcus thermophilus and its use in PCR systems for strain differentiation, Res Microbiol 156(2), 161-172, 2005 The doubly phosphorylated form of HPr, HPr(Ser~P)(His-P), is abundant in exponentially growing cells of Streptococcus thermophilus and phosphorylates the lactose transporter LacS as efficiently as HPr(His~P), Appl Environ Microbiol 71(3), 1364-1372, 2005 The relevance of carbon dioxide metabolism in Streptococcus thermophilus, Microbiology (Reading, Engl) 155(6), 1953-1965, 2009 The rpoB gene as a target for PCR-DGGE analysis to follow lactic acid bacterial population dynamics during food fermentations, Food Microbiol 21(4), 481-487, 2004 Validation of the publication of new names and new combinations previously effectively published outside the IJSB. List No. 54, Int J Syst Bacteriol 45, 619-620, 1995
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