Strain identifier

BacDive ID: 1906

Type strain: Yes

Species: Burkholderia cepacia

Strain Designation: 717

Strain history: CIP <- 1980, C. Richard, Inst. Pasteur, Paris, France <- ATCC <- R.W. Ballard: strain 717 <- M.P. Starr <- W.H. Burkholder, Pseudomonas cepacia

NCBI tax ID(s): 983594 (strain), 292 (species)

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Burkholderia cepacia 717 is an obligate aerobe, mesophilic, motile human pathogen that has multiple antibiotic resistances and was isolated from Onion.

  1. antibiotic resistance
  2. motile
  3. human pathogen
  4. mesophilic
  5. obligate aerobe
  6. 16S sequence
  7. Bacteria
  8. genome sequence
  • Availability in culture collections External linksarrow_down
  • [Ref.: #3094] Culture collection no. DSM 7288, ATCC 25416, DSM 9897, ICPB PC25, NCTC 10743, JCM 5964, BCRC 13208, CCUG 12691, CCUG 13226, CECT 4137, CGMCC 1.1813, CGMCC 1.3393, CIP 80.24, IFO 14074, KCTC 2966, LMG 1222, NBRC 14074, NRRL B-14810, VTT E-94512, ACM 1771
    [Ref.: #71550] *
    [Ref.: #71551] *
    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 Outer membrane vesicles produced by Burkholderia cepacia cultured with subinhibitory concentrations of ceftazidime enhance pro-inflammatory responses. Kim SY, Kim MH, Son JH, Kim SI, Yun SH, Kim K, Kim S, Shin M, Lee JC Virulence 10.1080/21505594.2020.1802193 2020 *
    Enzymology Enantioselective synthesis of a chiral intermediate of himbacine analogs by Burkholderia cepacia lipase A. Chen Y, Gao F, Zheng G, Gao S Biotechnol Lett 10.1007/s10529-020-02969-z 2020 *
    Metabolism Application of lipase from Burkholderia cepacia in the degradation of agro-industrial effluent. Mello Bueno PR, de Oliveira TF, Castiglioni GL, Soares Junior MS, Ulhoa CJ Water Sci Technol 10.2166/wst.2015.037 2015 *
    Cultivation Influence of Legionella pneumophila and other water bacteria on the survival and growth of Acanthamoeba polyphaga. Anacarso I, Guerrieri E, Bondi M, de Niederhausern S, Iseppi R, Sabia C, Contri M, Borella P, Messi P Arch Microbiol 10.1007/s00203-010-0618-0 2010 *
    Enzymology Isolation, heterologous expression and characterization of an endo-polygalacturonase produced by the phytopathogen Burkholderia cepacia. Massa C, Degrassi G, Devescovi G, Venturi V, Lamba D Protein Expr Purif 10.1016/j.pep.2007.03.019 2007 *
    Pathogenicity Identification of an RTX determinant of Burkholderia cenocepacia J2315 by subtractive hybridization. Whitby PW, VanWagoner TM, Taylor AA, Seale TW, Morton DJ, LiPuma JJ, Stull TL J Med Microbiol 10.1099/jmm.0.46138-0 2006 *
    Metabolism Identification of quorum-sensing-regulated genes of Burkholderia cepacia. Aguilar C, Friscina A, Devescovi G, Kojic M, Venturi V J Bacteriol 10.1128/JB.185.21.6456-6462.2003 2003 *
    Metabolism Transmissible Burkholderia cepacia genomovar IIIa strains bind and convert monomeric iron(III) protoporphyrin IX into the mu-oxo oligomeric form. Smalley JW, Charalabous P, Hart CA, Silver J Microbiology (Reading) 10.1099/mic.0.26160-0 2003 *
    Metabolism Quorum-sensing system and stationary-phase sigma factor (rpoS) of the onion pathogen Burkholderia cepacia genomovar I type strain, ATCC 25416. Aguilar C, Bertani I, Venturi V Appl Environ Microbiol 10.1128/AEM.69.3.1739-1747.2003 2003 *
    Enzymology Construction of a deep-rough mutant of Burkholderia cepacia ATCC 25416 and characterization of its chemical and biological properties. Gronow S, Noah C, Blumenthal A, Lindner B, Brade H J Biol Chem 10.1074/jbc.M206942200 2002 *

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