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Higher-Level Production of Volatile Fatty Acids In Vitro by Chicken Gut Microbiotas than by Human Gut Microbiotas as Determined by Functional Analyses

机译:鸡肠道菌群比人肠道菌群体外高水平生产挥发性脂肪酸的功能分析

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The aim of this study was to determine the relationship between the composition and function of gut microbiota. Here, we compared the bacterial compositions and fermentation metabolites of human and chicken gut microbiotas. Results generated by quantitative PCR (qPCR) and 454 pyrosequencing of the 16S rRNA gene V3 region showed the compositions of human and chicken microbiotas to be markedly different, with chicken cecal microbiotas displaying more diversity than human fecal microbiotas. The nutrient requirements of each microbiota growing under batch and chemostat conditions were analyzed. The results showed that chicken cecal microbiotas required simple sugars and peptides to maintain balanced growth in vitro but that human fecal microbiotas preferred polysaccharides and proteins. Chicken microbiotas also produced higher concentrations of volatile fatty acids than did human microbiotas. Our data suggest that the availability of different fermentable substrates in the chicken cecum, which exist due to the unique anatomical structure of the cecum, may provide an environment favorable to the nourishment of microbiotas suited to the production of the higher-energy metabolites required by the bird. Therefore, gut structure, nutrition, immunity, and life-style all contribute to the selection of an exclusive bacterial community that produces types of metabolites beneficial to the host.
机译:这项研究的目的是确定肠道菌群的组成与功能之间的关系。在这里,我们比较了人类和鸡肠道菌群的细菌组成和发酵代谢产物。 16S rRNA基因V3区域的定量PCR(qPCR)和454焦磷酸测序所产生的结果表明,人和鸡的菌群组成明显不同,鸡的盲肠菌群比人的粪便菌群更具多样性。分析了在间歇和化学恒温条件下生长的每个微生物群的营养需求。结果表明,鸡盲肠菌群需要简单的糖和肽来维持体外的平衡生长,而人粪便菌群则更喜欢多糖和蛋白质。鸡肉中的微生物群也比人的微生物群产生更高浓度的挥发性脂肪酸。我们的数据表明,由于盲肠独特的解剖结构而在鸡盲肠中存在不同的可发酵底物,这可能提供有利于微生物营养的环境,从而适合于生产高能代谢物。鸟。因此,肠道结构,营养,免疫力和生活方式都有助于选择一个独特的细菌群落,该群落产生有益于宿主的代谢产物。

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