Lahmar Malek, Besrour-Aouam Norhane, Hernández-Alcántara Annel M, Diez-Ozaeta Iñaki, Fhoula Imene, López Paloma, Mohedano Mari Luz, Ouzari Hadda-Imene
Centro de Investigaciones Biológicas Margarita Salas (CIB-CSIC), 28040 Madrid, Spain.
Microorganisms and Active Biomolecules Laboratory (LR03ES03), Faculty of Sciences of Tunis, University of Tunis El Manar, Tunis 2092, Tunisia.
Foods. 2024 Dec 19;13(24):4112. doi: 10.3390/foods13244112.
The use of lactic acid bacteria for developing functional foods is increasing for their ability to synthesize beneficial metabolites such as vitamin B (riboflavin, RF) and postbiotic compounds. Here, the spontaneous mutant FS54 B2 was isolated by treatment of the dextran-producing FS54 strain with roseoflavin. FS54 B2 overproduced RF (4.9 mg/L) in synthetic medium. The FMN riboswitch is responsible for the regulation of RF biosynthesis, and sequencing of the coding DNA revealed that FS54 B2 carries the G131U mutation. FS54 B2 retained the capacity of FS54 to synthesize high levels of dextran (3.8 g/L) in synthetic medium. The fermentation capacities of the two strains was tested in commercial oat-, soy- and rice-based beverages. The best substrate for FS54 B2 was the oat-based drink, in which, after fermentation, the following were detected: RF (2.4 mg/L), dextran (5.3 mg/L), potential prebiotics (oligosaccharides (panose (5.1 g/L), isomaltose (753 mg/L) and isomaltotriose (454 mg/L)) and the antioxidant mannitol (16.3 g/L). pH-lowering ability and cell viability after one month of storage period were confirmed. As far as we know, this is the first time that an RF-overproducing strain has been isolated, characterized and tested for its potential use in the development of functional beverages.
由于乳酸菌能够合成有益代谢产物,如维生素B(核黄素,RF)和后生化合物,因此利用乳酸菌开发功能性食品的情况日益增多。在此,通过用玫瑰红菌素处理产葡聚糖的FS54菌株,分离出了自发突变体FS54 B2。FS54 B2在合成培养基中过量生产RF(4.9毫克/升)。FMN核糖开关负责调节RF的生物合成,编码DNA测序显示FS54 B2携带G131U突变。FS54 B2保留了FS54在合成培养基中合成高水平葡聚糖(3.8克/升)的能力。在市售的燕麦、大豆和大米基饮料中测试了这两种菌株的发酵能力。FS54 B2的最佳底物是燕麦基饮料,发酵后检测到以下物质:RF(2.4毫克/升)、葡聚糖(5.3毫克/升)、潜在益生元(低聚糖(潘糖(5.1克/升)、异麦芽糖(753毫克/升)和异麦芽三糖(454毫克/升))以及抗氧化剂甘露醇(16.3克/升)。证实了其降低pH值的能力和储存一个月后的细胞活力。据我们所知,这是首次分离、鉴定并测试了一株过量生产RF的菌株在功能性饮料开发中的潜在用途。