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饮食影响人类肠道微生物组的功能。

Diet influences the functions of the human intestinal microbiome.

机构信息

Department of Soil, Plant and Food Science, University of Bari Aldo Moro, Bari, Italy.

Department of Agricultural, Forest and Food Science, University of Turin, Grugliasco, Italy.

出版信息

Sci Rep. 2020 Mar 6;10(1):4247. doi: 10.1038/s41598-020-61192-y.

Abstract

Gut microbes programme their metabolism to suit intestinal conditions and convert dietary components into a panel of small molecules that ultimately affect host physiology. To unveil what is behind the effects of key dietary components on microbial functions and the way they modulate host-microbe interaction, we used for the first time a multi-omic approach that goes behind the mere gut phylogenetic composition and provides an overall picture of the functional repertoire in 27 fecal samples from omnivorous, vegan and vegetarian volunteers. Based on our data, vegan and vegetarian diets were associated to the highest abundance of microbial genes/proteins responsible for cell motility, carbohydrate- and protein-hydrolyzing enzymes, transport systems and the synthesis of essential amino acids and vitamins. A positive correlation was observed when intake of fiber and the relative fecal abundance of flagellin were compared. Microbial cells and flagellin extracted from fecal samples of 61 healthy donors modulated the viability of the human (HT29) colon carcinoma cells and the host response through the stimulation of the expression of Toll-like receptor 5, lectin RegIIIα and three interleukins (IL-8, IL-22 and IL-23). Our findings concretize a further and relevant milestone on how the diet may prevent/mitigate disease risk.

摘要

肠道微生物会根据肠道状况调整自身代谢,并将膳食成分转化为一组小分子,这些小分子最终会影响宿主的生理机能。为了揭示关键膳食成分对微生物功能的影响及其调节宿主-微生物相互作用的方式,我们首次采用了一种多组学方法,不仅深入研究了肠道微生物的系统发育组成,还全面描绘了 27 份来自杂食、素食和严格素食志愿者粪便样本中的功能基因库。基于我们的数据,素食和严格素食与负责细胞运动、碳水化合物和蛋白质水解酶、运输系统以及必需氨基酸和维生素合成的微生物基因/蛋白丰度最高有关。当比较膳食纤维的摄入量和鞭毛蛋白的相对粪便丰度时,观察到了正相关。从 61 位健康供体的粪便样本中提取的微生物细胞和鞭毛蛋白,通过刺激 Toll 样受体 5、凝集素 RegIIIα 和三种白细胞介素(IL-8、IL-22 和 IL-23)的表达,调节了人(HT29)结肠癌细胞的活力和宿主反应。我们的研究结果进一步证实了饮食如何预防/减轻疾病风险这一重要的里程碑。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f440/7060259/bf0b0caa84d6/41598_2020_61192_Fig1_HTML.jpg

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