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从阿根廷传统酸奶中分离的乳酸菌发酵剂生产天然叶酸。

Production of natural folates by lactic acid bacteria starter cultures isolated from artisanal Argentinean yogurts.

机构信息

Centro de Referencia para Lactobacilos (CERELA-CONICET), Chacabuco 145, (T4000ILC) San Miguel de Tucumán, Tucumán, Argentina.

出版信息

Can J Microbiol. 2012 May;58(5):581-8. doi: 10.1139/w2012-026. Epub 2012 Apr 13.

Abstract

Folate is a B-group vitamin that cannot be synthesized by humans and must be obtained exogenously. Although some species of lactic acid bacteria (LAB) can produce folates, little is known about the production of this vitamin by yogurt starter cultures. Lactobacillus delbrueckii subsp. bulgaricus and Streptococcus thermophilus strains were isolated from artisanal Argentinean yogurts and were grown in folate-free culture medium (FACM) and nonfat milk after which intracellular and extracellular folate production were evaluated. From the initial 92 isolated LAB strains, 4 L. delbrueckii subsp. bulgaricus and 32 S. thermophilus were able to grow in the absence of folate. Lactobacillus delbrueckii subsp. bulgaricus CRL 863 and S. thermophilus CRL 415 and CRL 803 produced the highest extracellular folate levels (from 22.3 to 135 µg/L) in FACM. In nonfat milk, these strains were able to increase the initial folate concentrations by almost 190%. This is the first report where native strains of L. delbrueckii subsp. bulgaricus were shown to produce natural folate. The LAB strains identified in this study could be used in developing novel fermented products bio-enriched in natural folates that could in turn be used as an alternative to fortification with the controversial synthetic chemical folic acid.

摘要

叶酸是一种 B 族维生素,人体无法合成,必须从外源性获得。尽管某些乳酸菌(LAB)可以产生叶酸,但对于酸奶发酵剂培养物生产这种维生素的情况知之甚少。从阿根廷传统酸奶中分离出保加利亚乳杆菌亚种和嗜热链球菌菌株,在不含叶酸的培养基(FACM)和脱脂牛奶中培养,然后评估细胞内和细胞外叶酸的产生。从最初的 92 株分离的 LAB 菌株中,有 4 株保加利亚乳杆菌亚种和 32 株嗜热链球菌能够在没有叶酸的情况下生长。保加利亚乳杆菌亚种 CRL 863 和嗜热链球菌 CRL 415 和 CRL 803 在 FACM 中产生的细胞外叶酸水平最高(从 22.3 到 135μg/L)。在脱脂牛奶中,这些菌株能够将初始叶酸浓度提高近 190%。这是首次报道保加利亚乳杆菌亚种的本土菌株能够产生天然叶酸。本研究中鉴定的 LAB 菌株可用于开发新型发酵产品,使其富含天然叶酸,从而可以替代有争议的合成化学叶酸进行强化。

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