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| Content Provider | frontiers |
|---|---|
| Author | Luo, Yuheng Zhang, Ling Li, Hua Smidt, Hauke Wright, André-Denis G. Zhang, Keying Ding, Xuemei Zeng, Qiufeng Bai, Shiping Wang, Jianping Li, Jian Zheng, Ping Tian, Gang Cai, Jingyi Chen, Daiwen |
| Abstract | Soluble dietary fibers (SDF) are fermented more than insoluble dietary fibers (IDF), but their effect on colonic bacterial community structure and function remains unclear. Thus, bacterial community composition and function in the colon of BALB/c mice (n = 7) fed with a high level (approximately 20%) of typical SDF, oat-derived β-glucan (G), microcrystalline cellulose (M) as IDF, or their mixture (GM), were compared. Mice in group G showed a lowest average feed intake (p 0.05) compared to other groups, which may be associated with the highest concentration of colonic propionate (p < 0.05) in these mice. The bacterial α-diversity of group G was significantly lower than other groups (p < 0.01). In group G, the relative abundance of bacteria belonging to the phylum Bacteroidetes was significantly increased, whereas bacteria from the phylum Firmicutes were significantly decreased (p < 0.01). The core bacteria for different treatments showed distinct differences. Bacteroides, Dehalobacterium and Prevotella, including known acetogens and carbohydrate fermenting organisms, were significantly increased in relative abundance in group G. In contrast, Adlercreutzia, Odoribacter and Coprococcus were significantly more abundant in group M, whereas Oscillospira, Desulfovibrio and Ruminoccaceae, typical hydrogenotrophs equipped with multiple carbohydrate active enzymes (CAZy), were remarkably enriched in group GM (p < 0.05). The relative abundance of bacteria from the three classes of Proteobacteria, Betaproteobacteria, Gammaproteobacteria (including Enterobacteriaceae) and Deltaproteobacteria, were significantly more abundant in group G, indicating a higher ratio of conditional pathogenic bacteria in mice fed dietary β-glucan in current study. The predicted colonic microbial function showed an enrichment of “Energy metabolism” and “Carbohydrate metabolism” pathways in mice from group G and M, suggesting that the altered bacterial community in the colon of mice with the two dietary fibers probably resulted in a more efficient degradation of dietary polysaccharides. Our result suggests that the influence of dietary β-glucan (SDF) on colonic bacterial community of mice was more extensively than MCC (IDF). Co-supplementation of the two fibers may help to increase the bacterial diversity and reduce the conditional pathogens in the colon of mice. |
| ISSN | 1664302X |
| DOI | 10.3389/fmicb.2017.00966 |
| Volume Number | 8 |
| Journal | Frontiers in Microbiology |
| Language | English |
| Publisher Date | 2017-05-30 |
| Access Restriction | Open |
| Subject Keyword | Colonic bacterial community 16S high throughput sequencing PICRUSt predicted functions Dietary fibers Balb/c mice |
| Content Type | Text |
| Resource Type | Article |
| Subject | Microbiology Microbiology (medical) |
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