Gut microbiota and metabolic modulation by supplementation of polysaccharide-producing Bacillus licheniformis from Tibetan Yaks: A comprehensive multi-omics analysis

地衣芽孢杆菌 肠道菌群 生物 毛螺菌科 厚壁菌 代谢组 代谢组学 代谢途径 益生元 柠檬酸循环 微生物学 微生物代谢 生物化学 蛋白质细菌 细菌 新陈代谢 生物信息学 枯草芽孢杆菌 遗传学 16S核糖体RNA 基因
作者
Zhibo Zeng,Chuxian Quan,Shimeng Zhou,Saisai Gong,Mudassar Iqbal,Muhammad Fakhar‐e‐Alam Kulyar,Shah Nawaz,Kewei Li,Jiakui Li
出处
期刊:International Journal of Biological Macromolecules [Elsevier BV]
卷期号:254: 127808-127808 被引量:1
标识
DOI:10.1016/j.ijbiomac.2023.127808
摘要

Gut microbiota and their metabolic processes depend on the intricate interplay of gut microbiota and their metabolic processes. Bacillus licheniformis, a beneficial food supplement, has shown promising effects on stabilizing gut microbiota and metabolites. However, the precise mechanisms underlying these effects remain elusive. In this study, we investigated the impact of polysaccharide-producing B. licheniformis as a dietary supplement on the gut microbiome and metabolites through a combination of scanning electron microscopy (SEM), histological analysis, high-throughput sequencing (HTS), and metabolomics. Our findings revealed that the B. licheniformis-treated group exhibited significantly increased jejunal goblet cells. Moreover, gut microbial diversity was lower in the treatment group as compared to the control, accompanied by noteworthy shifts in the abundance of specific bacterial taxa. Enrichment of Firmicutes, Lachnospiraceae, and Clostridiales_bacterium contrasted with reduced levels of Campylobacterota, Proteobacteria, Parasutterella, and Helicobacter. Notably, the treatment group showed significant weight gain after 33 days, emphasizing the polysaccharide's impact on host metabolism. Delving into gut metabolomics, we discovered significant alterations in metabolites. Nine metabolites, including olprinone, pyruvic acid, and 2-methyl-3-oxopropanoate, were upregulated, while eleven, including defoslimod and voclosporin were down-regulated, shedding light on phenylpropanoid biosynthesis, tricarboxylic acid cycle (TCA cycle), and the glucagon signaling pathway. This comprehensive multi-omics analysis offers compelling insights into the potential of B. licheniformis as a dietary polysaccharide supplement for gut health and host metabolism, promising significant implications for gut-related issues.
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