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B-Group vitamin production by lactic acid bacteria - current knowledge and potential applications.

机译:乳酸菌产生的B组维生素-当前知识和潜在应用。

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摘要

Although most vitamins are present in a variety of foods, human vitamin deficiencies still occur in many countries, mainly because of malnutrition not only as a result of insufficient food intake but also because of unbalanced diets. Even though most lactic acid bacteria (LAB) are auxotrophic for several vitamins, it is now known that certain strains have the capability to synthesize water-soluble vitamins such as those included in the B-group (folates, riboflavin and vitamin B12 amongst others). This review article will show the current knowledge of vitamin biosynthesis by LAB and show how the proper selection of starter cultures and probiotic strains could be useful in preventing clinical and subclinical vitamin deficiencies. Here, several examples will be presented where vitamin-producing LAB led to the elaboration of novel fermented foods with increased and bioavailable vitamins. In addition, the use of genetic engineering strategies to increase vitamin production or to create novel vitamin-producing strains will also be discussed. This review will show that the use of vitamin-producing LAB could be a cost-effective alternative to current vitamin fortification programmes and be useful in the elaboration of novel vitamin-enriched products. copyright 2011 The Authors. Journal of Applied Microbiology copyright 2011 The Society for Applied Microbiology.
机译:尽管大多数食物中都存在多种维生素,但许多国家仍然存在人体维生素缺乏症,这主要是由于营养不良,不仅是由于食物摄入不足造成的,而且还因为饮食不均衡。即使大多数乳酸菌(LAB)对几种维生素都是营养缺陷型的,但现在已知某些菌株具有合成水溶性维生素的能力,例如B组所含的那些(叶酸,核黄素和维生素B 12 等)。这篇评论文章将展示LAB当前有关维生素生物合成的知识,并展示如何正确选择发酵剂培养物和益生菌菌株可如何预防临床和亚临床维生素缺乏症。在这里,将列举几个例子,其中产生维生素的LAB导致精心制作了具有增加的和可利用的维生素的新型发酵食品。此外,还将讨论利用基因工程策略增加维生素产量或创建新的维生素生产菌株。这项审查将表明,使用产生维生素的LAB可能是当前维生素强化计划的一种经济有效的替代方法,并且可用于开发新型富含维生素的产品。版权所有2011作者。应用微生物学杂志版权所有2011应用微生物学协会。

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