Strain sc|0021682


Strain numbers

ATCC 14577 = B 23268 = BCRC 12825 = CCM 2120 = CCRC 12825 = CCUG 7428 = CIP 65.30 = DSM 28 = HAMBI 1938 = IAM 13420 = IFO 15095 = JCM 2502 = LMG 7134 (Cat. ) = NBRC 15095 = NCCB 75018 = NCIB 9370 = NCIMB 9370 = NCTC 10338 = NRRL B-23268 = VKM B-509
This strain is associated as type material for multiple names:

StrainInfo: SI-ID 7137 T

Taxon
Lysinibacillus sphaericus (not Bacillus sphaericus)
Sample
Human pleural fluid (GB)
Cultures (28)
LMG 7134 = ATCC 14577 = CCM 2120 = CCUG 7428 = CECT 33 = IAM 13420 = JCM 2502 = NCFB 1767 = NCIB 9370 = NCTC 10338 = NCDO 1767 = CCRC 12825 = NCIMB 9370 = IFO15095 = LMD 75.18 = KCTC 3346 = NBRC 15095 = NRRL B-23268 = NCCB 75018 = BCRC 12825 = HAMBI 1938 = CCT 0514 = KACC 10554 = NCIM 2478 = VKM B-509 = VTT E-97782 = DSM 28 = CIP 65.30
Other Designations (20)
CCEB 640 = Gibson 1013 = Logan B0012 = CCTM 2865 = OUT 8413 = strain Marburg = CCTM La 2865 = Marburg = LMG 7134 2 = T. Gibson 1013 = Kral Marburg strain Wund Neide = Kral Marburg Wund Neide = LMG 7134T QC 1/99 = DSMZ 28 = LMG7134Tt2 QC 1/99 = LMG7134T QC 10/04 = Gibson T., 1013 = LMG 7134 1 = LMG7134Tt1 QC 1/99 = 1013
Sequences (20)
Associated Publications (12)
  • DOI: 10.1016/0003-9861(85)90001-3
    Soper TS, Ueno H, Manning JM (1985). Substrate-induced changes in sulfhydryl reactivity of bacterial D-amino acid transaminase.
  • DOI: 10.1128/aem.63.3.1006-1010.1997
    Siegel JP, Smith AR, Novak RJ (1997). Comparison of the cellular fatty acid composition of a bacterium isolated from a human and alleged to be Bacillus sphaericus with that of Bacillus sphaericus isolated from a mosquito larvicide.
  • DOI: 10.3892/ijmm.2012.890
    Cui YB, Zhou Y, Liu WN, Chen QW, Ma GF, Shi WH, Wang YG, Yang L (2012). Cloning of the surface layer gene sllB from Bacillus sphaericus ATCC 14577 and its heterologous expression and purification.
  • DOI: 10.2144/96215rr05
    Breitwieser A, Kupcu S, Howorka S, Weigert S, Langer C, Hoffmann-Sommergruber K, Scheiner O, Sleytr UB, Sara M (1996). 2-D protein crystals as an immobilization matrix for producing reaction zones in dipstick-style immunoassays.
  • DOI: 10.1099/ijs.0.65455-0
    Miwa H, Ahmed I, Yokota A, Fujiwara T (2009). Lysinibacillus parviboronicapiens sp. nov., a low-boron-containing bacterium isolated from soil.
  • DOI: 10.1128/genomeA.00625-13
    Jeong H, Jeong DE, Sim YM, Park SH, Choi SK (2013). Genome Sequence of Lysinibacillus sphaericus Strain KCTC 3346T.
  • DOI: 10.1186/s12864-016-3056-9
    Gomez-Garzon C, Hernandez-Santana A, Dussan J (2016). Comparative genomics reveals Lysinibacillus sphaericus group comprises a novel species.
  • DOI: 10.1007/s10482-024-01993-7
    Dunlap CA, Johnson ET, Burkett-Cadena M, Cadena J, Muturi EJ (2024). Lysinibacillus pinottii sp. nov., a novel species with anti-mosquito and anti-mollusk activity.
  • DOI: 10.1002/bab.2412
    Imandi SB, Karanam SK, Nagumantri R, Srivastava RK, Sarangi PK (2022). Neural networks and genetic algorithm as robust optimization tools for modeling the microbial production of poly-beta-hydroxybutyrate (PHB) from Brewers' spent grain.
  • DOI: 10.1099/ijs.0.64440-0
    Zhang L, Xu Z, Patel BKC (2007). Bacillus decisifrondis sp. nov., isolated from soil underlying decaying leaf foliage.
  • DOI: 10.1099/ijs.0.068320-0
    Zhu C, Sun G, Chen X, Guo J, Xu M (2014). Lysinibacillus varians sp. nov., an endospore-forming bacterium with a filament-to-rod cell cycle.
  • DOI: 10.1371/journal.pone.0271125
    Kontomina E, Garefalaki V, Fylaktakidou KC, Evmorfidou D, Eleftheraki A, Avramidou M, Udoh K, Panopoulou M, Felfoldi T, Marialigeti K, Fakis G, Boukouvala S (2022). A taxonomically representative strain collection to explore xenobiotic and secondary metabolism in bacteria.
Outside links and data sources
Retrieved about 11 hours ago via StrainInfo API (CC BY 4.0)

Metadata

Cannonical URL
https://seqco.de/s:21682
Local history
  • Registered about 1 year ago
  • Last modified about 11 hours ago
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