Bioprotective mechanisms of lactic acid bacteria against fungal spoilage of food

Биозащитные механизмы молочнокислых бактерий против грибной порчи пищевых продуктов
Solvej Siedler, Rafik Balti, Ana Rute Neves
2018-11-29

antifungal peptidescompetitive exclusionfood bioprotectionfungal spoilagelactic acid bacteria
In modern societies, conscious consumers demand healthy, fresh and natural foods devoid of added chemical preservatives and stabilizers. The use of lactic acid bacteria (LAB) to preserve food is one of the oldest and best characterized approach. Production of organic acids is the main feature LAB use to outcompete spoilage organisms, but several other mechanisms have been demonstrated. In this review, a critical overview of the mechanisms used by LAB to inhibit spoilage organisms will be presented. Discrepancies between the concentrations of compounds resulting from LAB activity and their inhibitory amounts are discussed. Technical limitations hindering discoveries in this field as well as future trends in the application of LAB solutions to food bioprotection will be covered, including antifungal peptides and competitive exclusion.
1
LAB employ additional antifungal mechanisms beyond acidification, including antifungal peptides and competitive exclusion.
2
LAB-based bioprotection is positioned as a natural alternative to added chemical preservatives, with future applications focused on expanding antifungal solutions.
3
Lactic acid bacteria preserve food primarily by producing organic acids that suppress fungal spoilage organisms.
4
Reported concentrations of LAB-produced compounds do not always match the amounts required for demonstrated microbial inhibition.
5
Technical limitations currently hinder discovery and validation of LAB-mediated antifungal mechanisms.

Lactic acid bacteria used for food bioprotection against fungal spoilage

Bioprotective mechanisms by which lactic acid bacteria inhibit fungal spoilage organisms, including organic acids, antifungal peptides, and competitive exclusion

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2018-11-29
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Solvej Siedler
Rafik Balti
Ana Rute Neves
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