• Title of article

    Response surface optimization of the cultivation conditions and medium composition a novel probiotic strain Bacillus pumilus STF26

  • Author/Authors

    Han, D. Bilkent University - UNAM, Institute of Materials Science and Nanotechnology, Turkey , San, N. O. Bilkent University - UNAM, Institute of Materials Science and Nanotechnology, Turkey , San, N. O. Gazi Üniversitesi - Polatlı Faculty of Literature and Science, Life Sciences Application and Research Center - Department of Biology, Turkey , Angun, P. Bilkent University - UNAM, Institute of Materials Science and Nanotechnology, Turkey , Onarman Umu, O. C. Bilkent University - UNAM, Institute of Materials Science and Nanotechnology, Turkey , Demirci, A. Pennsylvania State University,University Park - Department of Agricultural and Biological Engineering, USA , Tekinay, T. Gazi Üniversitesi - Life Sciences Application and Research Center, Faculty of Medicine - Department of Medical Biology and Genetics, Turkey

  • From page
    1355
  • To page
    1361
  • Abstract
    Probiotics have been widely used in aquaculture as a controlling disease, enhancing immune responses, providing nutrients, and improving water quality. The use of Bacillus species as probiotics is expanding rapidly with increasing number of studies. Optimization of cultivation conditions and the medium composition for the improvement of novel potential probiotic strain Bacillus pumilus STF26 was performed by using response surface methodology (RSM). Factors optimized were temperature, pH and the concentrations of dextrose, yeast extract, KH2PO4 and MgSO4.7H2O. The optimum values are found as 30.9°C, 6.9, 20% (w/v), for temperature, pH and the concentrations of dextrose and 1.526% (w/v), 0.1% (w/v) and 0.5% (w/v), for yeast extract, KH2PO4 and MgSO4.7H2O, respectively. As a result, maximum biomass at optimum conditions was 10.42 g/L, which is nearly 2.5 times higher when compared to the one obtained by using Luria Broth medium at optimized temperature and pH values.
  • Keywords
    Bacillus pumilus , Optimization , Probiotics , Response surface , methodology
  • Journal title
    International Food Research Journal
  • Journal title
    International Food Research Journal
  • Record number

    2560915