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野生日本猕猴的胃和结肠微生物组。

Stomach and colonic microbiome of wild Japanese macaques.

机构信息

Primate Research Institute, Kyoto University, Inuyama, Aichi, Japan.

Faculty of Environmental Earth Science, Hokkaido University, Sapporo, Hokkaido, Japan.

出版信息

Am J Primatol. 2021 May;83(5):e23242. doi: 10.1002/ajp.23242. Epub 2021 Feb 10.

Abstract

Within the gastrointestinal tract, the physiochemical microenvironments are highly diversified among the different stages of food digestion. Accordingly, gut microbiome composition and function vary at different gut sites. In this study, we examine and compare the compositional and functional potential between the stomach and colonic microbiome of wild Japanese macaques (Macaca fuscata yakui) living in the evergreen forest of Yakushima Island. We find a significantly lower microbial diversity in the stomach than in the colon, possibly due to the stomach's acidic and aerobic environment, which is suboptimal for microbial survival. According to past studies, the microbial taxa enriched in the stomach are aero- and acid-tolerant. By functional prediction through PICRUSt2, we reveal that the stomach microbiome is more enriched in pathways relating to the metabolism of simple sugars. On the contrary, the colonic microbiota is more enriched with fiber-degrading microbes, such as those from Lachnospiracea, Ruminococcaceae, and Prevotella. Our study shows a clear difference in the microbiome between the stomach and colon of Japanese macaques in both composition and function. This study provides a preliminary look at the alpha diversity and taxonomic composition within the stomach microbiome of Japanese macaques, a hindgut-fermenting nonhuman primate.

摘要

在胃肠道中,不同消化阶段的理化微环境高度多样化。因此,肠道微生物组的组成和功能在不同的肠道部位有所不同。在这项研究中,我们检查并比较了生活在屋久岛常绿森林中的野生日本猕猴(Macaca fuscata yakui)胃和结肠微生物组的组成和功能潜力。我们发现胃中的微生物多样性明显低于结肠,这可能是由于胃的酸性和需氧环境不利于微生物存活。根据过去的研究,在胃中富集的微生物类群是耐酸和耐氧的。通过 PICRUSt2 进行功能预测,我们揭示了胃微生物组中与简单糖代谢相关的途径更为丰富。相反,结肠微生物群中富含纤维降解菌,如来自 Lachnospiracea、Ruminococcaceae 和 Prevotella 的微生物。我们的研究表明,日本猕猴胃和结肠的微生物组在组成和功能上存在明显差异。本研究初步观察了后发酵非人类灵长类动物日本猕猴胃微生物组的 alpha 多样性和分类组成。

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