Strain sc|0037064


Strain numbers

ATCC 33090 = CCUG 15531 = CIP 80.11 = DSM 20649 = LMG 11387 = NBIMCC 8755 = NCTC 11288 = SLCC 3379

StrainInfo: SI-ID 3529 T

Taxon
Listeria innocua
Sample
Bovine, brain (DE)
Cultures (17)
LMG 11387 = ATCC 33090 = NCTC 11288 = CCUG 15531 = CECT 910 = CCM 4030 = CIP 80.11 = CCRC 14843 = KCTC 3586 = BCRC 14843 = ICMP 12989 = NCAIM B.01933 = ACM 4984 = NRRL B-33016 = VTT E-97772 = CNCTC 6515 = DSM 20649
Other Designations (14)
SLCC 3379 = Seeliger SLCC 3379 = WDCM 00017 = CLIP 12511 = Seeliger 58 = CCTM La 2676 = NZRM 3024 = LMG 11387T QC 9/98 = LMG 11387T QC 10/98 = CNCTC Li 71/89 = Seeliger Li 58 = 58/1971 = DSMZ 20649 = JCM 32814
Sequences (31)
Associated Publications (25)
  • DOI: 10.1016/j.fm.2013.02.006
    Rossi F, Marzotto M, Cremonese S, Rizzotti L, Torriani S (2013). Diversity of Streptococcus thermophilus in bacteriocin production; inhibitory spectrum and occurrence of thermophilin genes.
  • DOI: 10.1186/s13568-017-0474-2
    Azizi F, Habibi Najafi MB, Edalatian Dovom MR (2017). The biodiversity of Lactobacillus spp. from Iranian raw milk Motal cheese and antibacterial evaluation based on bacteriocin-encoding genes.
  • DOI: 10.1016/s0168-1605(01)00640-7
    Le Marc Y, Huchet V, Bourgeois CM, Guyonnet JP, Mafart P, Thuault D (2002). Modelling the growth kinetics of Listeria as a function of temperature, pH and organic acid concentration.
  • DOI: 10.1016/j.ijfoodmicro.2004.10.014
    Coroller L, Guerrot V, Huchet V, Le Marc Y, Mafart P, Sohier D, Thuault D (2005). Modelling the influence of single acid and mixture on bacterial growth.
  • DOI: 10.4315/0362-028x-69.1.86
    Brinez WJ, Roig-Sagues AX, Hernandez Herrero MM, Guamis Lopez B (2006). Inactivation of Listeria innocua in milk and orange juice by ultrahigh-pressure homogenization.
  • DOI: 10.4315/0362-028x-73.2.266
    Bisha B, Weinsetel N, Brehm-Stecher BF, Mendonca A (2010). Antilisterial effects of gravinol-s grape seed extract at low levels in aqueous media and its potential application as a produce wash.
  • DOI: 10.1111/1750-3841.12078
    Murillo-Martinez MM, Tello-Solis SR, Garcia-Sanchez MA, Ponce-Alquicira E (2013). Antimicrobial activity and hydrophobicity of edible whey protein isolate films formulated with nisin and/or glucose oxidase.
  • DOI: 10.4315/0362-028X.JFP-12-368
    Montazeri N, Himelbloom BH, Oliveira AC, Leigh MB, Crapo CA (2013). Refined liquid smoke: a potential antilisterial additive to cold-smoked sockeye salmon (Oncorhynchus nerka).
  • DOI: 10.3389/fmicb.2016.01998
    Tremonte P, Succi M, Coppola R, Sorrentino E, Tipaldi L, Picariello G, Pannella G, Fraternali F (2016). Homology-Based Modeling of Universal Stress Protein from Listeria innocua Up-Regulated under Acid Stress Conditions.
  • DOI: 10.1016/j.meatsci.2018.02.002
    Cenci-Goga BT, Karama M, Sechi P, Iulietto MF, Grispoldi L, Selvaggini R, Ceccarelli M, Barbera S (2018). Fate of selected pathogens in spiked <<SALAME NOSTRANO>> produced without added nitrates following the application of NONIT technology.
  • DOI: 10.3168/jds.2018-15548
    Jrad Z, El-Hatmi H, Adt I, Gouin S, Jardin J, Oussaief O, Dbara M, Arroum S, Khorchani T, Degraeve P, Oulahal N (2019). Antilisterial activity of dromedary lactoferrin peptic hydrolysates.
  • DOI: 10.3934/microbiol.2018.1.67
    Ramroop P, Neetoo H (2018). Antilisterial activity of Cymbopogon citratus on crabsticks.
  • DOI: 10.1016/j.ram.2019.06.001
    Vallejo M, Parada RB, Marguet ER (2019). [Isolation of enterocin-producing Enterococcus hirae strains from the intestinal content of the Patagonian mussel (Mytilus edulis platensis)].
  • DOI: 10.4315/JFP-20-337
    Martinez BA, Bianchini A, Stratton J, Raabe O, Swanson S (2021). Condensation Removal Practices and Their Potential for Contributing to Environmental Pathogen Contamination in Food Processing Facilities.
  • DOI: 10.1016/j.foodres.2022.111676
    Marques CS, Arruda TR, Silva RRA, Ferreira ALV, Oliveira WLA, Rocha F, Mendes LA, de Oliveira TV, Vanetti MCD, Soares NFF (2022). Exposure to cellulose acetate films incorporated with garlic essential oil does not lead to homologous resistance in Listeria innocua ATCC 33090.
  • DOI: 10.3390/ijms24021517
    Perez-Ramos A, Ladjouzi R, Mihasan M, Teiar R, Benachour A, Drider D (2023). Advances in Characterizing the Transport Systems of and Resistance to EntDD14, A Leaderless Two-Peptide Bacteriocin with Potent Inhibitory Activity.
  • DOI: 10.1016/j.foodres.2023.113341
    Shang H, Tan BZ, Dakwa V, D'Agnese E, Stanley RA, Sassi H, Lai YW, Deaker R, Bowman JP (2023). Effect of pre-harvest sanitizer treatments on Listeria survival, sensory quality and bacterial community dynamics on leafy green vegetables grown under commercial conditions.
  • DOI: 10.3390/life13101958
    Joulak I, Azabou S, Dumas E, Freitas F, Attia H, Gharsallaoui A (2023). Microencapsulation via Spray-Drying of Geraniol-Loaded Emulsions Stabilized by Marine Exopolysaccharide for Enhanced Antimicrobial Activity.
  • DOI: 10.1016/j.fm.2014.11.015
    Engelhardt T, Albano H, Kisko G, Mohacsi-Farkas C, Teixeira P (2014). Antilisterial activity of bacteriocinogenic Pediococcus acidilactici HA6111-2 and Lactobacillus plantarum ESB 202 grown under pH and osmotic stress conditions.
  • DOI: 10.4315/0362-028x-69.12.2992
    Lopez-Exposito I, Minervini F, Amigo L, Recio I (2006). Identification of antibacterial peptides from bovine kappa-casein.
  • DOI: 10.1021/jf101620c
    Viuda-Martos M, El Gendy Ael-N, Sendra E, Fernandez-Lopez J, Abd El Razik KA, Omer EA, Perez-Alvarez JA (2010). Chemical composition and antioxidant and anti-Listeria activities of essential oils obtained from some Egyptian plants.
  • DOI: 10.1177/1082013215624807
    Vega S, Saucedo D, Rodrigo D, Pina C, Armero C, Martinez A (2016). Modeling the isothermal inactivation curves of Listeria innocua CECT 910 in a vegetable beverage under low-temperature treatments and different pH levels.
  • DOI: 10.3920/BM2011.0001
    El-Ghaish S, Hadji-Sfaxi I, Ahmadova A, Choiset Y, Rabesona H, Sitohy M, Haertle T, Chobert JM (2011). Characterization of two safe Enterococcus strains producing enterocins isolated from Egyptian dairy products.
  • DOI: 10.1016/s0168-1605(99)00025-2
    Ganzle MG, Hertel C, van der Vossen JM, Hammes WP (1999). Effect of bacteriocin-producing lactobacilli on the survival of Escherichia coli and Listeria in a dynamic model of the stomach and the small intestine.
  • DOI: 10.4315/0362-028X.JFP-14-262
    Kramer B, Wunderlich J, Muranyi P (2015). Pulsed light decontamination of endive salad and mung bean sprouts and impact on color and respiration activity.
Outside links and data sources
Retrieved 27 days ago via StrainInfo API (CC BY 4.0)

Metadata

Cannonical URL
https://seqco.de/s:37064
Local history
  • Registered 8 months ago
  • Last modified 27 days ago
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