Strain sc|0026461


StrainInfo: SI-ID 389259 T

Taxon
Bacillus thuringiensis
Sample
Mediterranean flour moth
Cultures (38)
LMG 7138 = ATCC 10792 = CCM 19 = CCUG 7429 = CECT 197 = DSM 2046 = IAM 12077 = NCFB 1146 = NCIB 9134 = NCIB 9207 = NCDO 1146 = NCIMB 9134 = NCIMB9207 = IMI 348918 = VKM B-1544 = VKM B-439 = VKM B-454 = LMD 70.8 = CCRC 14683 = HAMBI 252 = NCAIM B.01292 = NRRL NRS-996 = VTT E-86245 = KCTC 1033 = KCTC 1034 = KCTC 3452 = NCCB 70008 = HAMBI 478 = NRRL HD-735 = BCRC 14683 = CCT 0539 = ICMP 12371 = NCIM 2130 = NCIM 2159 = CDBB 25 = NBRC 101235 = JCM 20386 = CIP 53.137
Other Designations (23)
CN 3624 = Gordon 1124 = NRS 996 = CCEB 457 = Porter strain Mattes = LBG B-4034 = Steinhaus 0-3-30 = LMG 7138T QC 9/01 = MKBT B-0049 = Mattes = E.A. Steinhaus 0-3-30 = DSMZ 2046 = NRCC 996 = N.R. Smith 996 = PCM 1853 = LMG7138T QC 3/05 = Steinhaus E. A 0-3-33 = R.E. Gordon 1124 = CCEB-056 = PCM 1853: Porter strain Mattes = Smith 996 = WDCM 00221 = NRS-996
Sequences (33)
Associated Publications (11)
  • DOI: 10.1039/d1ra05736g
    Niu S, Liu D, Shao Z, Huang J, Fan A, Lin W (2021). Chlorinated metabolites with antibacterial activities from a deep-sea-derived Spiromastix fungus.
  • DOI: 10.1128/jb.122.2.412-417.1975
    Ketchum PA, Owens MS (1975). Production of molybdenum-coordinating compound by Bacillus thuringiensis.
  • DOI: 10.3354/dao02697
    Romero M, Muras A, Mayer C, Bujan N, Magarinos B, Otero A (2014). In vitro quenching of fish pathogen Edwardsiella tarda AHL production using marine bacterium Tenacibaculum sp. strain 20J cell extracts.
  • DOI: 10.3389/fmicb.2016.00794
    Manga P, Klingeman DM, Lu TY, Mehlhorn TL, Pelletier DA, Hauser LJ, Wilson CM, Brown SD (2016). Replicates, Read Numbers, and Other Important Experimental Design Considerations for Microbial RNA-seq Identified Using Bacillus thuringiensis Datasets.
  • DOI: 10.1016/j.micpath.2018.10.013
    Chelliah R, Wei S, Park BJ, Park JH, Park YS, Kim SH, Jin YG, Oh DH (2018). New perspectives on Mega plasmid sequence (poh1) in Bacillus thuringiensis ATCC 10792 harbouring antimicrobial, insecticidal and antibiotic resistance genes.
  • DOI: 10.1016/j.micpath.2019.02.014
    Chelliah R, Wei S, Park BJ, Rubab M, Banan-Mwine Dalirii E, Barathikannan K, Jin YG, Oh DH (2019). Whole genome sequence of Bacillus thuringiensis ATCC 10792 and improved discrimination of Bacillus thuringiensis from Bacillus cereus group based on novel biomarkers.
  • DOI: 10.1080/03601234.2019.1603756
    Nikolaieva N, Kacaniova M, Gonzalez JC, Grygorieva O, Nozkova J (2019). Determination of microbiological contamination, antibacterial and antioxidant activities of natural plant hazelnut (Corylus avellana L.) pollen.
  • DOI: 10.1093/oxfordjournals.jbchem.a134315
    Ikezawa H, Nakabayashi T, Suzuki K, Nakajima M, Taguchi T, Taguchi R (1983). Complete purification of phosphatidylinositol-specific phospholipase C from a strain of Bacillus thuringiensis.
  • Pal A, Prabhu A, Kumar AA, Rajagopal B, Dadhe K, Ponnamma V, Shivakumar S (2009). Optimization of process parameters for maximum poly(-beta-)hydroxybutyrate (PHB) production by Bacillus thuringiensis IAM 12077.
  • DOI: 10.1007/s12223-013-0265-3
    Lupan I, Ianc MB, Kelemen BS, Carpa R, Rosca-Casian O, Chiriac MT, Popescu O (2013). New and old microbial communities colonizing a seventeenth-century wooden church.
  • DOI: 10.1093/femsec/fiy092
    Armada E, Leite MFA, Medina A, Azcon R, Kuramae EE (2018). Native bacteria promote plant growth under drought stress condition without impacting the rhizomicrobiome.
Outside links and data sources
Retrieved about 1 month ago via StrainInfo API (CC BY 4.0)

Metadata

Cannonical URL
https://seqco.de/s:26461
Local history
  • Registered 8 months ago
  • Last modified about 1 month ago
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