As a long-standing biomedical model, rats have been frequently used in studies exploring the correlations between gastrointestinal (GI) bacterial biota and diseases. In the present study, luminal and mucosal samples taken along the longitudinal axis of the rat digestive tract were subjected to 16S rRNA gene sequencing-based analysis to determine the baseline microbial composition. Results showed that the community diversity increased from the upper to lower GI segments and that the stratification of microbial communities as well as shift of microbial metabolites were driven by biogeographic location. A greater proportion of lactate-producing bacteria (such as Lactobacillus, Turicibacter and Streptococcus) were found in the stomach and small intestine, while anaerobic Lachnospiraceae and Ruminococcaceae, fermenting carbohydrates and plant aromatic compounds, constituted the bulk of the large-intestinal core microbiota where topologically distinct co-occurrence networks were constructed for the adjacent luminal and mucosal compartments. When comparing the GI microbiota from different hosts, we found that the rat microbial biogeography might represent a new reference, distinct from other murine animals. Our study provides the first comprehensive characterization of the rat GI microbiota landscape for the research community, laying the foundation for better understanding and predicting the disease-related alterations in microbial communities.

译文

:作为一种长期存在的生物医学模型,大鼠经常被用于研究胃肠道(GI)细菌菌群与疾病之间关系的研究。在本研究中,沿大鼠消化道纵轴采集的腔和粘膜样品经过基于16S rRNA基因测序的分析,以确定基线微生物组成。结果表明,群落多样性从上消化道段到下消化道段增加,并且微生物群落的分层以及微生物代谢产物的移动是由生物地理学位置决定的。在胃和小肠中发现了较大比例的产乳酸细菌(如乳酸杆菌,轮状杆菌和链球菌),而厌氧的乳酸杆菌科和瘤胃菌科则发酵碳水化合物和植物芳香化合物,构成了大肠核心微生物群的大部分。为相邻的腔和粘膜区室构建了拓扑学上截然不同的共现网络。当比较来自不同宿主的胃肠道微生物群时,我们发现大鼠微生物的生物地理学可能代表了一个新的参考,不同于其他鼠类动物。我们的研究为研究界首次提供了大鼠胃肠微生物群景观的全面表征,为更好地了解和预测微生物群落中与疾病相关的变化奠定了基础。

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