Antagonistic activities of lactic acid bacteria in food and feed fermentations

Антагонистическая активность молочнокислых бактерий при ферментации пищевых продуктов и кормов
Sven Lindgren, Walter J. Dobrogosz
1990-09-01

Lactobacillus reuteri reuterinantimicrobial metabolitesbacteriocinsfood and feed fermentationlactic acid bacteria
Many factors contribute to a successful natural fermentation of carbohydrate-rich food and feed products. Metabolic activities of lactic acid bacteria (LAB) play a leading role. Their ability to rapidly produce copious amounts of acidic end products with a concomitant pH reduction is the major factor in these fermentations. Although their specific effects are difficult to quantitate, other LAB metabolic products such as hydrogen peroxide and diacetyl can also contribute to the overall antibiosis and preservative potential of these products. The contribution of bacteriocins is also difficult to evaluate. It is suggested that they may play a role in selecting the microflora which initiates the fermentation. Bacteriocins are believed to be important in the ability of LAB to compete in non-fermentative ecosystems such as the gastrointestinal tract. During the past few decades interest has arisen in the use of the varied antagonistic activities of LAB to extend the shelf-life of protein-rich products such as meats and fish. Recent findings indicate that the newly discovered Lactobacillus reuteri reuterin system may be used for this purpose.
1
Bacteriocins may help select the microbial community initiating fermentation and enable lactic acid bacteria to compete in non-fermentative ecosystems such as the gastrointestinal tract.
2
Hydrogen peroxide and diacetyl produced by lactic acid bacteria may enhance antimicrobial activity and the preservative potential of fermented products.
3
Rapid production of acidic end products and accompanying pH reduction by lactic acid bacteria are the primary preservation mechanisms in carbohydrate-rich food and feed fermentations.
4
The Lactobacillus reuteri reuterin system represents a recently identified potential tool for preserving protein-rich food products.
5
The antagonistic activities of lactic acid bacteria are increasingly being explored to extend the shelf life of protein-rich foods, including meat and fish.

Lactic acid bacteria (LAB) in carbohydrate-rich food and feed fermentations and in the preservation of protein-rich products

Antagonistic metabolic activities and preservative effects of LAB, including acidification, hydrogen peroxide, diacetyl, bacteriocins, and the Lactobacillus reuteri reuterin system

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1990-09-01
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Sven Lindgren
Walter J. Dobrogosz
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