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NCIMB 702259

货号 TS390137
中文名称 None
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产品简介
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NCIMB numberNCIMB 702259
Deposit typeBacteria
Type strainYes
GMONo
Taxon nameBifidobacterium longum
Depositor designation"E194B, BF36"
Preservation methodUnknown
Other catalogue informationFormer NCFB organism
Price bandA
Media368
Gas regimeanaerobic
ACDP category1
Depositor NameG Reuter, Berlin
Depositor Address
Sourceadult intestine
Date of Accession01/01/1971
History"M E Sharpe, NIRD 1978"
Other collection IDsATCC15707 DSM20219 NCDO2259 NCTC11818
Yeast?False
K12No
ReferencesInt. J. Syst. Bact. (1971) 21, 274 & 276-294 The tmRNA website: reductive evolution of tmRNA in plastids and other endosymbionts, Nucleic Acids Res 32(Databaseissue), D104-D108, 2004 Analysis, characterization, and loci of the tuf genes in lactobacillus and bifidobacterium species and their direct application for species identification, Appl Environ Microbiol 69(11), 6908-6922, 2003 Bifidobacteria identification based on 16S rRNA and pyruvate kinase partial gene sequence analysis, Anaerobe 8(6), 341-344, 2002 Characterization of the genus Bifidobacterium by automated ribotyping and 16S rRNA gene sequences, Microbiol Immunol 50(1), 1-10, 2006 Comparison of partial gene sequences encoding a phosphoketolase for the identification of bifidobacteria, Lebensm Wiss Technol 38(1), 101-105, 2005 Differentiation of Bifidobacterium species using partial RNA polymerase {beta}-subunit (rpoB) gene sequences, Int J Syst Evol Microbiol , 2010 Identification, detection, and enumeration of human bifidobacterium species by PCR targeting the transaldolase gene, Appl Environ Microbiol 68(5), 2420-2427, 2002 New approach to phylogenetic analysis of the genus Bifidobacterium based on partial HSP60 gene sequences, Int J Syst Evol Microbiol 51(5), 1633-1638, 2001 Ribosomal DNA sequence of bifidobacteria: implications for sequence-based identification of the human colonic flora, Microb Ecol Health Dis 6, 23-27, 1993 Analysis of tetracycline resistance tet(W) genes and their flanking sequences in intestinal Bifidobacterium species, J Antimicrob Chemother 62(4), 688-693, 2008 Antimicrobial susceptibility profiles of 32 type strains of Lactobacillus, Bifidobacterium, Lactococcus and Streptococcus spp, Int J Antimicrob Agents 31(5), 484-486, 2008 Bifidobacteria can protect from enteropathogenic infection through production of acetate, Nature 469(7331), 543-547, 2011 Characterization of a Novel beta-L-Arabinofuranosidase in Bifidobacterium longum: FUNCTIONAL ELUCIDATION OF A DUF1680 FAMILY MEMBER, J Biol Chem 286(44), 38079-38085, 2011 Identification and molecular cloning of a novel glycoside hydrolase family of core 1 type O-glycan-specific endo-alpha-N-acetylgalactosaminidase from Bifidobacterium longum, J Biol Chem 280(45), 37415-37422, 2005 Induction of alpha-L-arabinofuranosidase activity by monomeric carbohydrates in Bifidobacterium longum and ubiquity of encoding genes, Arch Microbiol 187(2), 145-153, 2007 Lacto-N-biosidase encoded by a novel gene of Bifidobacterium longum subspecies longum shows unique substrate specificity and requires a designated chaperone for its active expression, J Biol Chem 288(35), 25194-25206, 2013 Molecular and phenotypic traits of in-vitro-selected mutants of Bifidobacterium resistant to rifaximin, Int J Antimicrob Agents 31(6), 555-560, 2008 Molecular cloning and characterization of a beta-L-Arabinobiosidase in Bifidobacterium longum that belongs to a novel glycoside hydrolase family, J Biol Chem 286(7), 5143-5150, 2011 Practical Preparation of Lacto-N-biose I, a Candidate for the Bifidus Factor in Human Milk, Biosci Biotechnol Biochem 71(8), 2101-2104, 2007 Properties of recombinant beta-fructofuranosidase from bifidobacterium longum JCM1217, J Appl Glycosci (1999) 57, 73-76, 2010 The ability of bifidobacteria to degrade arabinoxylan oligosaccharide constituents and derived oligosaccharides is strain dependent, Appl Environ Microbiol 80(1), 204-217, 2014 The Bifidobacterium longum NCIMB 702259T ctr gene codes for a novel cholate transporter., Appl Environ Microbiol 72(1), 923-926, 2006 The gene encoding xylulose-5-phosphate/fructose-6-phosphate phosphoketolase (xfp) is conserved among Bifidobacterium species within a more variable region of the genome and both are useful for strain identification, FEMS Microbiol Lett 246(2), 251-257, 2005
PubMed Publicationhttps://www.ncbi.nlm.nih.gov/m/pubmed/16523284https://www.ncbi.nlm.nih.gov/m/pubmed/16391136https://www.ncbi.nlm.nih.gov/m/pubmed/25529295