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The Ability of Bifidobacteria To Degrade Arabinoxylan Oligosaccharide Constituents and Derived Oligosaccharides Is Strain Dependent

机译:双歧杆菌降解阿拉伯木聚糖低聚糖成分和衍生低聚糖的能力取决于菌株。

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摘要

Arabinoxylan oligosaccharides (AXOS) are prebiotic carbohydrates with promising health-promoting properties that stimulate the activity of specific colon bacteria, in particular bifidobacteria. However, the mechanisms by which bifidobacterial strains break down these compounds in the colon is still unknown. This study investigates AXOS consumption of a large number of bifidobacterial strains (36), belonging to 11 different species, systematically. To determine their degradation mechanisms, all strains were grown on a mixture of arabinose and xylose, xylo-oligosaccharides, and complex AXOS molecules as the sole added energy sources. Based on principal component and cluster analyses of their different arabinose substituent and/or xylose backbone consumption patterns, five clusters that were species independent could be distinguished among the bifidobacterial strains tested. In parallel, the strains were screened for the presence of genes encoding several putative AXOS-degrading enzymes, but no clear-cut correlation could be made with the different degradation mechanisms. The intra- and interspecies differences in the consumption patterns of AXOS indicate that bifidobacterial strains could avoid competition among each other or even could cooperate jointly to degrade these complex prebiotics. The knowledge gained on the AXOS degradation mechanisms in bifidobacteria can be of importance in the rational design of prebiotics with tailor-made composition and thus increased specificity in the colon.
机译:阿拉伯木聚糖低聚糖(AXOS)是益生元碳水化合物,具有促进健康的特性,可刺激特定结肠细菌(特别是双歧杆菌)的活性。然而,双歧杆菌菌株在结肠中分解这些化合物的机制仍是未知的。这项研究系统地调查了AXOS对大量双歧杆菌菌株(36)的消耗,这些菌株属于11个不同物种。为了确定其降解机理,所有菌株均在阿拉伯糖和木糖,木糖寡糖和复杂的AXOS分子的混合物上生长,作为唯一添加的能源。基于其不同的阿拉伯糖取代基和/或木糖主链消耗模式的主成分和聚类分析,可以在所测试的双歧杆菌菌株中区分五个物种独立的聚类。平行地,筛选菌株中是否存在编码几种推定的AXOS降解酶的基因,但无法通过不同的降解机理进行明确的相关性分析。种内和种间AXOS消费模式的差异表明,双歧杆菌菌株可以避免彼此竞争,甚至可以共同协作降解这些复杂的益生元。在双歧杆菌中AXOS降解机理方面获得的知识在合理设计具有定制组成的益生元中具有重要意义,从而可以提高结肠的特异性。

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