Department of Chemical and Biological Engineering/Food Science, Chalmers University of Technology, Gothenburg, Sweden.
J Appl Microbiol. 2012 May;112(5):975-84. doi: 10.1111/j.1365-2672.2012.05261.x. Epub 2012 Mar 7.
To screen 19 strains of bifidobacteria for main folate forms composition in synthetic folate-free and complex folate-containing media.
HPLC was used to analyse deconjugated folates extracted from bacterial biomass. Most strains had a total folate content above 4000 μg per 100 g dry matter (DM). The highest value of 9295 μg per 100 g DM was found in Bifidobacterium catenulatum ATCC 27539 and the lowest in Bifidobacterium animalis ssp. animalis ATCC 25527 containing 220 μg per 100 g DM. Ten strains grew in a synthetic folate-free medium (FFM), showing folate autotrophy and suggesting folate auxotrophy of the remaining nine. In the autotrophic strains, a consistently higher folate level was found in FFM as compared to a more complex folate-containing medium, suggesting reduced requirements for folates in the presence of growth factors otherwise requiring folates for synthesis. The contents of total folate, 5-CH(3) -H(4) folate and H(4) folate were strain dependent. 5-CH(3) -H(4) folate dominated in most strains.
Our results show that bifidobacteria folate content and composition is dynamic, is strain specific and depends on the medium. Suitable selection of the growth conditions can result in high levels of folate per cell unit biomass.
This suggests that certain bifidobacteria may contribute to the folate intake, either directly in foods, such as fermented dairy products, or in the intestine as folate-trophic probiotics or part of the natural microbiota.
在无合成叶酸和含复杂叶酸的培养基中筛选 19 株双歧杆菌的主要叶酸形式组成。
采用 HPLC 法分析从细菌生物量中提取的去共轭叶酸。大多数菌株的总叶酸含量超过 100 g 干物质(DM)中的 4000μg。双歧杆菌 ATCC 27539 的总叶酸含量最高,为 9295μg/100g DM,双歧杆菌动物亚种 ATCC 25527 的总叶酸含量最低,为 220μg/100g DM。10 株在无合成叶酸培养基(FFM)中生长,表现出自养性,表明其余 9 株为叶酸营养缺陷型。在自养株中,FFM 中的叶酸水平明显高于更复杂的含叶酸培养基,这表明在存在生长因子的情况下,对叶酸的需求降低,而这些生长因子通常需要叶酸来合成。总叶酸、5-CH(3)-H(4)叶酸和 H(4)叶酸的含量与菌株有关。5-CH(3)-H(4)叶酸在大多数菌株中占主导地位。
我们的研究结果表明,双歧杆菌的叶酸含量和组成是动态的,具有菌株特异性,并取决于培养基。合适的生长条件选择可以导致每单位细胞生物量的叶酸含量高。
这表明某些双歧杆菌可能通过直接在食物中(如发酵乳制品)或作为叶酸营养性益生菌或天然微生物群的一部分在肠道中,有助于叶酸的摄入。