• Title of article

    Microbial association and acidity development of unheated and pasteurized green-table olives fermented using glucose or sucrose supplements at various levels Original Research Article

  • Author/Authors

    N.G. Chorianopoulos، نويسنده , , I.S. Boziaris، نويسنده , , A. Stamatiou، نويسنده , , G.-J.E. Nychas، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2005
  • Pages
    8
  • From page
    117
  • To page
    124
  • Abstract
    Green-table olives, unheated and pasteurized, of Greek cultivar Conservolea were supplemented with glucose or sucrose in various amounts inoculated with Lactobacillus plantarum and fermentation was conducted. Although sugar supplements did not affect the lactic acid bacteria growth rate, they increased the rate of pH drop and the production of acids and lowered the final pH values in all cases. Adequate supplements of sugars (0.5%, 1.0% w v−1), of both types, in unheated olive fermentation, resulted in a fast pH drop, causing a satisfactory halt of Enterobacteriaceae growth in the first days of fermentation, and a subsequent population decline occurred in the following days, eliminating the danger of early stage spoilage and ensuring the safety of the final product. In pasteurized olives, where L. plantarum starter was the only microbial flora, it was considered worth evaluating the fermentation progress without any competition. The rate of pH drop was not as high as in unheated olives, but final pH values and acid development were more pronounced. Lactic acid was the predominant acid developed in both unheated and pasteurized olive fermentation, and increased sugar supplements resulted in faster production and higher yields of this acid. Acetic acid was also produced in low amounts at the end of fermentation, except in the cases of pasteurized olive fermentation supplemented with sucrose, where acetic acid was absent. A switch from homo-fermentative to hetero-fermentative metabolism might have taken place in case of glucose presence, but the same was not observed for sucrose.
  • Keywords
    Fermentation , Microbial metabolites , Modelling , Spoilage , Enterobacteriaceae , Olives , Acidadaptation , Starters , Safety
  • Journal title
    Food Microbiology
  • Serial Year
    2005
  • Journal title
    Food Microbiology
  • Record number

    1189382