• Title of article

    Microbiological effects of olive mill waste addition to substrates for Pleurotus pulmonarius cultivation

  • Author/Authors

    Cristina Soler-Rivas، نويسنده , , Ana Garc?a-Rosado، نويسنده , , Isabel Polonia، نويسنده , , Gemma Junca-Blanch، نويسنده , , Francisco R. Mar?n، نويسنده , , Harry J. Wichers، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2006
  • Pages
    8
  • From page
    37
  • To page
    44
  • Abstract
    When olive mill wastes (OMWs) and vegetation waters (VWs) obtained during the manufacture of olive oil were added as substrate supplements for the cultivation of Pleurotus pulmonarius the material modified growth of the mushroom and the endemic microbiota of the substrate, in particular the mushroom-pathogenic bacterium Pseudomonas tolaasii, which is responsible for bacterial blotch disease in mushrooms. VW addition to substrates, at up to 30% (v/w), did not interfere with mycelial growth, but inhibited fruit body formation. Supplementation at up to 10% did not inhibit pinhead appearance and reduced Ps. tolaasii-related symptoms. In an attempt to identify the compounds responsible for the observed reduction of symptoms, products of acidic, basic or enzymic hydrolysis of oleuropein, together with OMW ethyl acetate extracts and several single compounds, were studied. OMW ethyl acetate extracts and hydroxytyrosol inhibited Ps. tolaasii growth, but did not show bactericidal activity. Only 4-methylcatechol and catechol were effective as bactericides against Ps. tolaasii (minimum biocidal concentration 5 and 10 mM, respectively). Such concentrations were not reached if the wastes were added at 10% v/w; at such levels growth of the bacteria will only be inhibited, not eliminated completely.
  • Keywords
    mushrooms , Olive mill waste , inhibition , Pleurotus pulmonarius , Bactericide , Pseudomonas tolaasii , phenols
  • Journal title
    International Biodeterioration and Biodegradation
  • Serial Year
    2006
  • Journal title
    International Biodeterioration and Biodegradation
  • Record number

    732807