Dairy Microbiology Division, and ‡Animal Biotechnology Centre, National Dairy Research Institute , Karnal, Haryana 132001, India.
J Agric Food Chem. 2016 Mar 9;64(9):1950-6. doi: 10.1021/acs.jafc.5b06165. Epub 2016 Mar 1.
Riboflavin has an important role in various cellular metabolic activities through its participation in oxidation-reduction reactions. In this study, as many as 60 lactobacilli were screened for the presence or absence of riboflavin biosynthesis genes and riboflavin production. Of these, only 14 strains were able to grow in a commercial riboflavin-free medium. We observed that the presence of riboflavin biosynthesis genes is strain-specific across different species of lactobacilli. The microbiological assay was found to be appreciably reproducible, sensitive, rapid, and inexpensive and, hence, can be employed for screening the riboflavin-producing strains. The study thus represents a convenient and efficient method for selection of novel riboflavin producers. These riboflavin(+) strains thus identified and characterized could be explored as potent candidates for the development of a wide range of dairy- and cereal-based foods for the delivery of in situ riboflavin to consumers.
核黄素通过参与氧化还原反应,在各种细胞代谢活动中发挥着重要作用。在这项研究中,我们筛选了多达 60 株乳酸菌,以确定它们是否存在核黄素生物合成基因和核黄素的产生。其中,只有 14 株能够在商业核黄素缺失培养基中生长。我们观察到,不同种属的乳酸菌中核黄素生物合成基因的存在具有菌株特异性。微生物测定法被发现具有良好的重现性、敏感性、快速性和经济性,因此可用于筛选产核黄素菌株。因此,该研究代表了一种选择新型核黄素生产菌的简便、高效的方法。这些鉴定和表征的核黄素阳性菌株可作为开发各种基于乳制品和谷物的食品的候选菌株,以向消费者原位递送核黄素。