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乳酸菌中寡糖和淀粉的代谢:综述。

Metabolism of oligosaccharides and starch in lactobacilli: a review.

机构信息

Department of Agricultural, Food and Nutritional Science, University of Alberta Edmonton, AB, Canada.

出版信息

Front Microbiol. 2012 Sep 26;3:340. doi: 10.3389/fmicb.2012.00340. eCollection 2012.

Abstract

Oligosaccharides, compounds that are composed of 2-10 monosaccharide residues, are major carbohydrate sources in habitats populated by lactobacilli. Moreover, oligosaccharide metabolism is essential for ecological fitness of lactobacilli. Disaccharide metabolism by lactobacilli is well understood; however, few data on the metabolism of higher oligosaccharides are available. Research on the ecology of intestinal microbiota as well as the commercial application of prebiotics has shifted the interest from (digestible) disaccharides to (indigestible) higher oligosaccharides. This review provides an overview on oligosaccharide metabolism in lactobacilli. Emphasis is placed on maltodextrins, isomalto-oligosaccharides, fructo-oligosaccharides, galacto-oligosaccharides, and raffinose-family oligosaccharides. Starch is also considered. Metabolism is discussed on the basis of metabolic studies related to oligosaccharide metabolism, information on the cellular location and substrate specificity of carbohydrate transport systems, glycosyl hydrolases and phosphorylases, and the presence of metabolic genes in genomes of 38 strains of lactobacilli. Metabolic pathways for disaccharide metabolism often also enable the metabolism of tri- and tetrasaccharides. However, with the exception of amylase and levansucrase, metabolic enzymes for oligosaccharide conversion are intracellular and oligosaccharide metabolism is limited by transport. This general restriction to intracellular glycosyl hydrolases differentiates lactobacilli from other bacteria that adapted to intestinal habitats, particularly Bifidobacterium spp.

摘要

低聚糖是由 2-10 个单糖残基组成的化合物,是乳杆菌栖息的主要碳水化合物来源。此外,低聚糖代谢对乳杆菌的生态适应性至关重要。乳杆菌的二糖代谢已经得到很好的理解;然而,关于更高的低聚糖代谢的数据很少。肠道微生物群落生态学的研究以及益生元的商业应用已经将研究重点从(可消化的)二糖转移到(不可消化的)更高的低聚糖。本文综述了乳杆菌中的低聚糖代谢。重点介绍了麦芽糊精、异麦芽低聚糖、果寡糖、半乳糖低聚糖和棉子糖家族低聚糖。淀粉也被认为是一种低聚糖。根据与低聚糖代谢相关的代谢研究、碳水化合物运输系统、糖苷水解酶和磷酸化酶的细胞位置和底物特异性以及 38 株乳杆菌基因组中代谢基因的信息,讨论了代谢。二糖代谢的代谢途径通常也能够代谢三糖和四糖。然而,除了淀粉酶和蔗聚糖酶外,用于低聚糖转化的代谢酶是细胞内的,并且低聚糖代谢受到运输的限制。这种对细胞内糖苷水解酶的普遍限制将乳杆菌与其他适应肠道生境的细菌区分开来,特别是双歧杆菌属。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c52f/3458588/6896f07e65c6/fmicb-03-00340-g001.jpg

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