Department of Animal and Food Hygiene, Obihiro University of Agriculture and Veterinary Medicine, Inada-cho, Obihiro, Hokkaido 080-8555, Japan.
Integrated Laboratory for Bioscience and Biotechnology, Udayana University, Bukit Jimbaran Campus, Badung, Bali, Indonesia.
Biosci Microbiota Food Health. 2016;35(1):41-9. doi: 10.12938/bmfh.2015-014. Epub 2015 Oct 6.
To investigate carbohydrate preference of a potential probiotic, Lactobacillus rhamnosus FSMM15, six prebiotics, including two milk-derived prebiotics, galactooligosaccharides and lacto-N-biose I, and four plant-origin prebiotics, beet oligosaccharide syrup, difructose anhydride III, fructooligosaccharides, and raffinose, were examined. The strain utilized the milk-derived prebiotics at similar levels to glucose but did not utilize the plant-origin ones in the same manner, reflecting their genetic background, which allows them to adapt to dairy ecological niches. These prebiotics had little influence on the expression pattern of cell surface-associated proteins in the strain; however, an ATP-binding cassette transporter substrate-binding protein and a glyceraldehyde-3-phosphate dehydrogenase were suggested to be upregulated in response to carbon starvation stress.
为了研究潜在益生菌鼠李糖乳杆菌 FSMM15 的碳水化合物偏好,研究了六种益生元,包括两种乳源益生元半乳糖低聚糖和乳-N-双糖 I,以及四种植物源益生元甜菜低聚糖糖浆、二果糖酐 III、果寡糖和棉子糖。该菌株对乳源益生元的利用水平与葡萄糖相似,但对植物源益生元的利用方式则不同,这反映了它们的遗传背景,使它们能够适应乳制品生态位。这些益生元对菌株表面相关蛋白的表达模式影响不大;然而,推测一种三磷酸腺苷结合盒转运蛋白底物结合蛋白和甘油醛-3-磷酸脱氢酶被上调以应对碳饥饿应激。