Strain sc|0017671


Strain numbers

95 = ATCC 8071 = CCUG 13452 = CCUG 13452 D = CFBP 3033 = CFBP 3034 = CIP 80.40 = DSM 6067 = JCM 9294 = LMG 2268 = NCIB 10471 = NCIMB 10471 = Strain Hammer 95
This strain is associated as type material for multiple names:

StrainInfo: SI-ID 4969 T

Taxon
Shewanella putrefaciensT
Sample
Butter
Cultures (28)
LMG 2268 = ATCC 8071 = CCUG 13452 = CECT 331 = IAM 12079 = IAM 1509 = IFO 3908 = NCIB 10471 = CCUG 13452 D = DSM 6067 = JCM 9294 = NCIMB 10471 = CCRC 10596 = KCTC 2684 = CECT 5346 = NBRC 3908 = CFBP 3033 = CFBP 3034 = NCTC 12960 = BCRC 10596 = CCT 0571 = KCTC 12458 = BCRC 17326 = CCRC 17326 = CNCTC 5277 = JCM 20190 = VTT E-95586 = CIP 80.40
Other Designations (18)
Hammer 95 = FIRDI 596 = ICPB 352 = ICPB 3352 = RH 1083 = NCTC CL158/77 = CCEB 670 = LMG 2268T QC 2/01 = Hugh 1083 = LMG 2268QC12/95 = CNCTCPs158/77 = CNCTC Ps 158/77 = DSMZ 6067 = Richard 12.80 = USCC 2037 = LMG 2268 t2T = LMG 2268 t1T = Hugh 103
Sequences (17)
Associated Publications (12)
  • DOI: 10.1128/AEM.62.8.2888-2896.1996
    Hovanec TA, DeLong EF (1996). Comparative analysis of nitrifying bacteria associated with freshwater and marine aquaria.
  • DOI: 10.1099/IJS.0.02997-0
    Ivanova EP, Christen R, Flavier S (2004). Phylogenetic relationships among marine Alteromonas-like proteobacteria: emended description of the family Alteromonadaceae and proposal of Pseudoalteromonadaceae fam. nov., Colwelliaceae fam. nov., Shewanellaceae fam. nov., Moritellaceae fam. nov., Ferrimonadaceae fam. nov., Idiomarinaceae fam. nov. and Psychromonadaceae fam. nov.
  • DOI: 10.1016/S0723-2020(85)80051-5
    Macdonell M, Colwell R (1985). Phylogeny of the Vibrionaceae, and Recommendation for Two New Genera, Listonella and Shewanella
  • DOI: 10.1073/PNAS.98.2.652
    Rowe-magnus DA, Davies J, Mazel D, Dychinco B, Ploncard P, Guerout A (2001). The evolutionary history of chromosomal super-integrons provides an ancestry for multiresistant integrons
  • DOI: 10.1099/00221287-98-2-439
    Lee JV, Gibson DM, Shewan JM (1977). A Numerical Taxonomic Study of Some Pseudomonas-like Marine Bacteria
  • DOI: 10.1080/01490450490266316
    Ona-nguema G, Génin J, Carteret C, Abdelmoula M, Jorand F, Benali O (2004). Competitive Formation of Hydroxycarbonate Green Rust 1 versus Hydroxysulphate Green Rust 2 in<i>Shewanella putrefaciens</i>Cultures
  • DOI: 10.1080/01490450500248960
    Zegeye A, Huguet L, Ona-nguema G, Carteret C, Abdelmoula M, Jorand F (2005). Formation of Hydroxysulphate Green Rust 2 as a Single Iron(II-III) Mineral in Microbial Culture
  • DOI: 10.1128/JB.187.11.3864-3868.2005
    Gaboriaud F, Jorand F, Bailet S, Dague E (2005). Surface Structure and Nanomechanical Properties of <i>Shewanella putrefaciens</i> Bacteria at Two pH values (4 and 10) Determined by Atomic Force Microscopy
  • DOI: 10.1529/BIOPHYSJ.105.068205
    Dague E, Duval J, Thomas F, Jorand F, Gaboriaud F (2006). Probing Surface Structures of Shewanella spp. by Microelectrophoresis
  • DOI: 10.1080/01490450601134325
    Zegeye A, Jorand F, Ruby C (2007). Kinetic and Thermodynamic Analysis During Dissimilatory γ-FeOOH Reduction: Formation of Green Rust 1 and Magnetite
  • DOI: 10.1111/J.1472-765X.2007.02225.X
    Jorand F, Ruby C, Zegeye A, Landry F (2007). Reduction of ferric green rust by Shewanella putrefaciens
  • DOI: 10.1016/J.JCIS.2011.03.067
    Pédrot M, Henin O, Boudec AL, Dia A, Davranche M (2011). How does organic matter constrain the nature, size and availability of Fe nanoparticles for biological reduction?
Outside links and data sources
Retrieved 11 days ago via StrainInfo API (CC BY 4.0)

Metadata

Cannonical URL
https://seqco.de/s:17671
Local history
  • Registered 25 days ago
  • Last modified 11 days ago
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