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A fibrolytic potential in the human ileum mucosal microbiota revealed by functional metagenomic

机译:人体回肠粘膜微生物的纤维溶解潜力透露功能偏心组织

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摘要

The digestion of dietary fibers is a major function of the human intestinal microbiota. So far this function has been attributed to the microorganisms inhabiting the colon, and many studies have focused on this distal part of the gastrointestinal tract using easily accessible fecal material. However, microbial fermentations, supported by the presence of short-chain fatty acids, are suspected to occur in the upper small intestine, particularly in the ileum. Using a fosmid library from the human ileal mucosa, we screened 20,000 clones for their activities against carboxymethylcellulose and xylans chosen as models of the major plant cell wall (PCW) polysaccharides from dietary fibres. Eleven positive clones revealed a broad range of CAZyme encoding genes from Bacteroides and Clostridiales species, as well as Polysaccharide Utilization Loci (PULs). The functional glycoside hydrolase genes were identified, and oligosaccharide break-down products examined from different polysaccharides including mixed-linkage β-glucans. CAZymes and PULs were also examined for their prevalence in human gut microbiome. Several clusters of genes of low prevalence in fecal microbiome suggested they belong to unidentified strains rather specifically established upstream the colon, in the ileum. Thus, the ileal mucosa-associated microbiota encompasses the enzymatic potential for PCW polysaccharide degradation in the small intestine.
机译:消化膳食纤维是人肠道微生物群的主要功能。到目前为止,这种功能归因于居住的微生物,并且许多研究已经使用易于接近的粪便材料对胃肠道的这种远端部分聚焦。然而,通过短链脂肪酸的存在支持的微生物发酵被怀疑发生在上小肠中,特别是在对象中。使用来自人肠粘膜的FOSMID库,我们筛选了20,000克隆的克隆对羧甲基纤维素和含有来自膳食纤维的主要植物细胞壁(PCW)多糖的模型的羧甲基纤维素和Xylans的活动。 11个阳性克隆揭示了来自菌株和梭菌种类的广泛的巨大巨大基因,以及多糖利用基因座(脉冲)。鉴定了功能性糖苷水解基因,并从包括混合键β-葡聚糖的不同多糖检查的寡糖分解产物。还在人体肠道微生物组中检查了副幼稚和脉冲。粪便微生物组中的几种低普遍性的基因暗示它们属于在回肠内的上游特异性地建立的未识别的菌株。因此,髂骨粘膜相关的微生物液包括小肠中PCW多糖降解的酶促潜力。

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