• Title of article

    Production, optimization growth conditions and properties of the xylanase from Aspergillus carneus M34

  • Author/Authors

    Fang، نويسنده , , Hsin-Yu and Chang، نويسنده , , Shin Min and Hsieh، نويسنده , , Meng Chou and Fang، نويسنده , , Tony J.، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2007
  • Pages
    7
  • From page
    36
  • To page
    42
  • Abstract
    Growth conditions, including incubation times, temperature, agitation rate and initial pH of medium, that affect xylanase production by Aspergillus carneus M34 were studied sequentially use the classical “change-one-factor-at-a-time” method. Our results showed that there was a similar trend between cellular xylanase activity and extracellular xylanase activity. The optimal conditions for xylanase production, different from their cell growth, were on the third day, 30 °C, 100 rpm and pH 4, respectively, in this test. Response surface methodology (RSM) was further introduced to optimize the cultivation conditions and to evaluate the significance of these factors. The optimal cultivation conditions predicted from canonical analysis of this model were achieved by incubation at 35.08 °C with an agitation rate of 111.9 rpm and an initial pH of 5.16. In addition, temperature was the most critical factor for xylanase production by A. carneus M34. Xylanase activity of 22.2 U/mL was verified using the predicted optimal conditions and confirmed the fitness and applicability of the model. The optimal temperature and pH of the crude xylanase activity was observed at 60 °C and acidic pH, respectively. Sustained xylanase activity in the crude extract was also detected over a broad range of pH from 3 to 10. Considering its higher specificity toward agricultural wastes, especially corn cob and coba husk, this strain can be used to develop low-cost media for the mass-production of xylanase.
  • Keywords
    Aspergillus carneus M34 , xylanase , Agricultural wastes , response surface methodology (RSM)
  • Journal title
    Journal of Molecular Catalysis B Enzymatic
  • Serial Year
    2007
  • Journal title
    Journal of Molecular Catalysis B Enzymatic
  • Record number

    1713211