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摄入低聚果糖会影响粪便 microRNAs 改变小鼠肠道菌群结构的作用。

Consumption of Fructooligosaccharides Influences the Action of Fecal MicroRNAs in Altering the Structure of Cultured Gut Microbiota in Mice.

机构信息

Research Faculty of Agriculture, Hokkaido University.

Graduate School of Agriculture, Hokkaido University.

出版信息

J Nutr Sci Vitaminol (Tokyo). 2024;70(5):387-395. doi: 10.3177/jnsv.70.387.

DOI:10.3177/jnsv.70.387
PMID:39477475
Abstract

Fecal microRNAs (miRNAs) derived from intestinal epithelial cells have been suggested to influence gut microbiota homeostasis. We recently showed that supplementing murine fecal small RNAs, most likely miRNAs, alters the structure of cultured fecal microbiota in a sequence-dependent manner. The present study investigated the effect of consuming fructooligosaccharides (FOS) on the action of fecal small RNAs in altering the structure of cultured fecal microbiota. Female C57BL/6J mice were allowed free access to AIN-93G diet, and tap water supplemented with or without 4% (w/v) FOS for 2 wk. As assessed by 16S rRNA gene sequence analysis in cecal contents, the gut microbiota structure differed between mice supplemented with and without FOS. Fecal bacteria isolated from the cecal contents of mice without FOS supplementation were cultured for 24 h under anaerobic conditions. The structure of cultured microbiota differed between the cultures supplemented with small RNAs isolated from the cecal contents of mice supplemented with and without FOS. Microarray analysis showed that the miRNA profile in the cecal contents differed between mice supplemented with and without FOS. We propose that FOS consumption influences the action of intestinal epithelial cell-derived miRNAs in altering the structure of cultured gut microbiota, and such FOS action is associated with changes in the profile of miRNAs. It may be possible that intestinal epithelial cell-derived miRNAs contribute, at least in part, to diet-induced alteration of gut microbiota.

摘要

肠道上皮细胞来源的粪便 microRNAs(miRNAs)被认为可以影响肠道微生物组的稳态。我们最近表明,补充鼠粪便中的小 RNA,很可能是 miRNAs,会以序列依赖的方式改变培养的粪便微生物组的结构。本研究探讨了食用低聚果糖(FOS)对粪便小 RNA 改变培养的粪便微生物组结构的作用。允许雌性 C57BL/6J 小鼠自由摄入 AIN-93G 饮食和添加或不添加 4%(w/v)FOS 的自来水 2 周。通过对盲肠内容物中 16S rRNA 基因序列分析评估,补充 FOS 和不补充 FOS 的小鼠之间的肠道微生物组结构存在差异。从不补充 FOS 的小鼠盲肠内容物中分离的粪便细菌在厌氧条件下培养 24 小时。补充 FOS 和不补充 FOS 的小鼠盲肠内容物中分离的小 RNA 培养的微生物组结构存在差异。微阵列分析显示,补充 FOS 和不补充 FOS 的小鼠盲肠内容物中的 miRNA 图谱存在差异。我们提出,FOS 的消耗影响了肠道上皮细胞衍生的 miRNAs 改变培养的肠道微生物组结构的作用,而这种 FOS 作用与 miRNA 谱的变化有关。肠道上皮细胞衍生的 miRNAs 可能至少部分参与了饮食诱导的肠道微生物组的改变。

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Consumption of Fructooligosaccharides Influences the Action of Fecal MicroRNAs in Altering the Structure of Cultured Gut Microbiota in Mice.摄入低聚果糖会影响粪便 microRNAs 改变小鼠肠道菌群结构的作用。
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