Title of article :
Inhibition of A. carbonarius growth and reduction of ochratoxin A by bacteria and yeast composites of technological importance in culture media and beverages
Author/Authors :
Kapetanakou، نويسنده , , A.E. and Kollias، نويسنده , , J.N. and Drosinos، نويسنده , , E.H. and Skandamis، نويسنده , , P.N.، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2012
Pages :
9
From page :
91
To page :
99
Abstract :
Five composites of yeast and six of bacterial isolates from fermented products were studied, in order to assess their ability to inhibit Aspergillus carbonarius growth and reduce OTA concentration in culture media and beverages. The antagonistic effect of the above composites against A. carbonarius growth was studied in synthetic grape medium of pH 3.5 and aw 0.98, 0.95, 0.92 after incubation at 25 °C. Different combinations of initial inocula of bacteria or yeast composites and fungi were used (102 cfu/mL vs 105 spores/mL; 105 cfu/mL vs 102 spores/mL; and 105 cfu/mL vs 105 spores/mL). Regarding the OTA reduction experiment, 103 and 107 cfu/mL of the bacteria and yeast composites were inoculated in liquid media of different pH (3.0, 4.0, 5.0, and 6.1 or 6.5) and initial OTA concentration (50 and 100 μg/L) and incubated at 30 °C. Moreover, grape juice, red wine, and beer were supplemented with 100 μg/L of OTA and inoculated with composites of 16 yeasts (16YM) and 29 bacterial (29BM) strains (107 cfu/mL) to estimate the kinetics of OTA reduction at 25 °C for 5 days. Fungal inhibition and OTA reduction were calculated in comparison to control samples. None of the bacterial composites inhibited A. carbonarius growth. The high inoculum of yeast composites (105 cfu/mL) showed more efficient fungal inhibition compared to cell density of 102 cfu/mL. All yeast composites showed higher OTA reduction (up to 65%) compared to bacteria (2–25%), at all studied assays. The maximum OTA reduction was obtained at pH 3.0 by almost all yeast composites. For all studied beverages the decrease in OTA concentration was higher by yeasts (16YM) compared to bacteria (29BM). The highest OTA reduction was observed in grape juice (ca 32%) followed by wine (ca 22%), and beer (ca 12%). The present findings may assist in the control of A. carbonarius growth and OTA production in fermented foodstuffs by the use of proper strains of technological importance.
Keywords :
Yeasts , Fermentation , Bacteria , A. carbonarius , Ochratoxin A , Reduction
Journal title :
International Journal of Food Microbiology
Serial Year :
2012
Journal title :
International Journal of Food Microbiology
Record number :
2117146
Link To Document :
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