Selective determination of Bifidobacterium, Lactobacillus acidophilus and Lactobacillus casei from probiotic yoghurts
Linda Bruknell
Abstract
Linda Bruknell
Abstract
During the experiments I examined different probiotic yoghurt products. The aim of the study was to determine separately the number (titer) of the natural yoghurt flora and the probiotic microflora, found in the products, faster than the usual methods. \n \nWe used the following products and microbes during the experiments: \nUnflavoured yoghurt (Danone): Streptococcus thermophylus, Lactobacillus delbruecki subsp. bulgaricus \n”Activia” yoghurt (Danone):\tStreptococcus thermophylus, Lactobacillus delbruecki subsp. bulgaricus, ’Bifidus Acti-regularis’ \n”Actimel”:\tStreptococcus thermophylus, Lactobacillus delbruecki subsp. bulgaricus, ’L. casei defensis’ \n”Bakony joghurt plusz”:\tStreptococcus thermophylus, Lactobacillus delbruecki subsp. bulgaricus, Bifidobakteria, Lactobacillus acidophylus We used the fact that the sugar fermentation ability and the pH range of multiplication of the normal yoghurt flora and the certain probiotics are different. \n \nI determined that the normal yoghurt microflora could grow only in the MRS broth with lactose content at pH 6.5. \nIn the other pH 4,5 or 6,5 broth which contained maltose or ribose as sugar source only the certain probiotics can grow. Using this fact these microbes can be differentiated from the normal yoghurt microflora, and with certain limits these microbes can be separated from each other also. We determined with storage examinations that “Danone Activia” yoghurt and “Actimel” contain the required amount of probiotics till the end of the shelf life. In the “Bakony joghurt plusz” product the number of bifidobacteria is low at the beginning of shelf life also; the cause is the lower pH value of the product.
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During the experiments I examined different probiotic yoghurt products. The aim of the study was to determine separately the number (titer) of the natural yoghurt flora and the probiotic microflora, found in the products, faster than the usual methods. \n \nWe used the following products and microbes during the experiments: \nUnflavoured yoghurt (Danone): Streptococcus thermophylus, Lactobacillus delbruecki subsp. bulgaricus \n”Activia” yoghurt (Danone):\tStreptococcus thermophylus, Lactobacillus delbruecki subsp. bulgaricus, ’Bifidus Acti-regularis’ \n”Actimel”:\tStreptococcus thermophylus, Lactobacillus delbruecki subsp. bulgaricus, ’L. casei defensis’ \n”Bakony joghurt plusz”:\tStreptococcus thermophylus, Lactobacillus delbruecki subsp. bulgaricus, Bifidobakteria, Lactobacillus acidophylus We used the fact that the sugar fermentation ability and the pH range of multiplication of the normal yoghurt flora and the certain probiotics are different. \n \nI determined that the normal yoghurt microflora could grow only in the MRS broth with lactose content at pH 6.5. \nIn the other pH 4,5 or 6,5 broth which contained maltose or ribose as sugar source only the certain probiotics can grow. Using this fact these microbes can be differentiated from the normal yoghurt microflora, and with certain limits these microbes can be separated from each other also. We determined with storage examinations that “Danone Activia” yoghurt and “Actimel” contain the required amount of probiotics till the end of the shelf life. In the “Bakony joghurt plusz” product the number of bifidobacteria is low at the beginning of shelf life also; the cause is the lower pH value of the product.
Key concepts: Lactobacillus casei, Lactobacillus acidophilus, Probiotic, Bifidobacterium, Lactobacillus, Food science, Microbiology, Biology