Centro de Referencia para Lactobacilos (CERELA-CONICET), Chacabuco 145, T4000ILC, San Miguel de Tucumán, Tucumán, Argentina.
Centro de Referencia para Lactobacilos (CERELA-CONICET), Chacabuco 145, T4000ILC, San Miguel de Tucumán, Tucumán, Argentina; Cátedra de Microbiología Superior, Facultad de Bioquímica, Química y Farmacia, Universidad Nacional de Tucumán, San Miguel de Tucumán, Tucumán, Argentina.
Food Microbiol. 2019 Jun;79:20-26. doi: 10.1016/j.fm.2018.10.015. Epub 2018 Oct 27.
Mandatory fortification of foods with folic acid is being questioned by many scientists principally because of the potential adverse secondary effects associated with their excessive consumption. It has been shown that selected strains of lactic acid bacteria (LAB) are able to produce natural forms of folate and these could be included in foods to prevent deficiencies without causing adverse effects. The aim of this study was to evaluate folate production and fol gene expression by Streptococcus gallolyticus subsp. macedonicus (S. macedonicus) CRL415 under different growth conditions in vitro and to assess its potential probiotic application. Results showed that glucose as the principal carbon source, and incubation at 42 °C under controlled pH conditions (6.0) increased folate production, fol gene expression, and growth of S. macedonicus CRL415. This strain was able to produce elevated folate concentrations during milk fermentation without the need of prolonged incubation times and was able to resist conditions simulating the gastrointestinal tract. In addition, S. macedonicus was susceptible to all required antibiotics, and had a good adhesion level to intestinal cells in vitro, making it a promising candidate for biotechnological application as functional starter cultures in the dairy industry.
许多科学家对食物强制添加叶酸提出质疑,主要是因为过量摄入可能带来的潜在不良副作用。研究表明,某些特定的乳酸菌(LAB)能够产生天然叶酸,这些可以添加到食物中以预防缺乏症,而不会产生不良影响。本研究旨在评估唾液链球菌嗜热亚种(S. macedonicus)CRL415 在不同体外生长条件下的叶酸生产和 fol 基因表达情况,并评估其潜在的益生菌应用。结果表明,以葡萄糖作为主要碳源,并在 42°C 下控制 pH 值(6.0)条件下孵育可提高 S. macedonicus CRL415 的叶酸生产、fol 基因表达和生长。该菌株在牛奶发酵过程中能够产生较高的叶酸浓度,而不需要长时间的孵育时间,并且能够抵抗模拟胃肠道的条件。此外,S. macedonicus 对所有必需的抗生素均敏感,并且在体外对肠道细胞具有良好的黏附水平,使其成为乳制品工业中功能性起始培养物的生物技术应用的有前途的候选物。