Strain identifier

BacDive ID: 1743

Type strain: Yes

Species: Bifidobacterium longum subsp. infantis

Strain Designation: S12

Strain history: CIP <- 1964, Lab. Ident., Inst. Pasteur, Paris, France, Bifidobacterium infantis, biotype V <- M. Sebald, Inst. Pasteur, Paris, France <- H. Werner <- G. Reuter: strain S12

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Bifidobacterium longum subsp. infantis S12 is an anaerobe, mesophilic bacterium that was isolated from intestine of infant.

  1. anaerobe
  2. mesophilic
  3. 16S sequence
  4. Bacteria
  5. genome sequence
  • Availability in culture collections External linksarrow_down
  • [Ref.: #8514] Culture collection no. DSM 20088, ATCC 15697, NCTC 11817, JCM 1222, BCRC 14602, BCRC 15416, CCM 4990, CCUG 18368, CECT 4551, CGMCC 1.1853, CGMCC 1.2202, CIP 64.67, KCTC 3249, KCTC 3270, LMG 8811, NCFB 2205, NCDO 2205
    [Ref.: #71390] *
    Literature: Only first 10 entries are displayed. Click here to see all.Click here to see only first 10 entries.
    Topicarrow to sort Titlearrow to sort Authorsarrow to sort Journalarrow to sort DOIarrow to sort Yeararrow to sort
    Pathogenicity The mechanism of probiotic action of human milk N-glycome towards B. infantis ATCC 15697 and identification of the principal functional components. Mao H, Li S, Yin B, Lin X, Guo J, Wang T, Voglmeir J, Liu L Food Chem 10.1016/j.foodchem.2022.132532 2022 *
    Phylogeny Phylogenetic, Functional and Safety Features of 1950s B. infantis Strains. Duboux S, Ngom-Bru C, De Bruyn F, Bogicevic B Microorganisms 10.3390/microorganisms10020203 2022 *
    Pathogenicity Next-generation prebiotic promotes selective growth of bifidobacteria, suppressing Clostridioides difficile. Hirano R, Sakanaka M, Yoshimi K, Sugimoto N, Eguchi S, Yamauchi Y, Nara M, Maeda S, Ami Y, Gotoh A, Katayama T, Iida N, Kato T, Ohno H, Fukiya S, Yokota A, Nishimoto M, Kitaoka M, Nakai H, Kurihara S Gut Microbes 10.1080/19490976.2021.1973835 2021 *
    Metabolism Generating a fucose permease deletion mutant in Bifidobacterium longum subspecies infantis ATCC 15697. Higgins MA, Ryan KS Anaerobe 10.1016/j.anaerobe.2021.102320 2021 *
    Phylogeny Five novel bifidobacterial species isolated from faeces of primates in two Czech zoos: Bifidobacterium erythrocebi sp. nov., Bifidobacterium moraviense sp. nov., Bifidobacterium oedipodis sp. nov., Bifidobacterium olomucense sp. nov. and Bifidobacterium panos sp. nov. Neuzil-Bunesova V, Lugli GA, Modrackova N, Vlkova E, Bolechova P, Burtscher J, Longhi G, Mancabelli L, Killer J, Domig K, Ventura M Int J Syst Evol Microbiol 10.1099/ijsem.0.004573 2020 *
    Biotechnology Riboflavin Biosynthesis and Overproduction by a Derivative of the Human Gut Commensal Bifidobacterium longum subsp. infantis ATCC 15697. Solopova A, Bottacini F, Venturi Degli Esposti E, Amaretti A, Raimondi S, Rossi M, van Sinderen D Front Microbiol 10.3389/fmicb.2020.573335 2020 *
    Metabolism Strain-specific strategies of 2'-fucosyllactose, 3-fucosyllactose, and difucosyllactose assimilation by Bifidobacterium longum subsp. infantis Bi-26 and ATCC 15697. Zabel BE, Gerdes S, Evans KC, Nedveck D, Singles SK, Volk B, Budinoff C Sci Rep 10.1038/s41598-020-72792-z 2020 *
    Pathogenicity A Whey Fraction Rich in Immunoglobulin G Combined with Bifidobacterium longum subsp. infantis ATCC 15697 Exhibits Synergistic Effects against Campylobacter jejuni. Quinn EM, Kilcoyne M, Walsh D, Joshi L, Hickey RM Int J Mol Sci 10.3390/ijms21134632 2020 *
    Metabolism 1,6-alpha-L-Fucosidases from Bifidobacterium longum subsp. infantis ATCC 15697 Involved in the Degradation of Core-fucosylated N -Glycan. Ashida H, Fujimoto T, Kurihara S, Nakamura M, Komeno M, Huang Y, Katayama T, Kinoshita T, Takegawa K J Appl Glycosci (1999) 10.5458/jag.jag.JAG-2019_0016 2020 *
    Metabolism Structural Identity of Galactooligosaccharide Molecules Selectively Utilized by Single Cultures of Probiotic Bacterial Strains. Boger M, van Leeuwen SS, Lammerts van Bueren A, Dijkhuizen L J Agric Food Chem 10.1021/acs.jafc.9b05968 2019 *

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