Peterson Christine Tara, Pérez-Santiago Josué, Iablokov Stanislav N, Rodionov Dmitry A, Peterson Scott N
Center of Excellence for Research and Training in Integrative Health, Department of Family Medicine, School of Medicine, University of California San Diego, La Jolla, CA 92093, USA.
Division of Cancer Biology, University of Puerto Rico Comprehensive Cancer Center, San Juan, PR 00927, USA.
Microorganisms. 2023 Mar 28;11(4):868. doi: 10.3390/microorganisms11040868.
Several studies have examined the impact of prebiotics on gut microbiota and associated changes in host physiology. Here, we used the in vitro cultivation of human fecal samples stimulated with a series of chemically related prebiotics and medicinal herbs commonly used in Ayurvedic medicine, followed by 16S rRNA sequencing. We applied a genome-wide metabolic reconstruction of enumerated communities to compare and contrast the structural and functional impact of prebiotics and medicinal herbs. In doings so, we examined the relationships between discrete variations in sugar composition and sugar linkages associated with each prebiotic to drive changes in microbiota composition. The restructuring of microbial communities with glycan substrates alters community metabolism and its potential impact on host physiology. We analyzed sugar fermentation pathways and products predicted to be formed and prebiotic-induced changes in vitamin and amino acid biosynthesis and degradation. These results highlight the utility of combining a genome-wide metabolic reconstruction methodology with 16S rRNA sequence-based community profiles to provide insights pertaining to community metabolism. This process also provides a rational means for prioritizing in vivo analysis of prebiotics and medicinal herbs in vivo to test hypotheses related to therapeutic potential in specific diseases of interest.
多项研究探讨了益生元对肠道微生物群的影响以及宿主生理的相关变化。在此,我们采用体外培养人粪便样本的方法,用一系列化学相关的益生元和阿育吠陀医学中常用的草药进行刺激,随后进行16S rRNA测序。我们对枚举群落进行全基因组代谢重建,以比较和对比益生元和草药的结构及功能影响。在此过程中,我们研究了与每种益生元相关的糖组成和糖连接的离散变化之间的关系,以推动微生物群组成的变化。用聚糖底物对微生物群落进行重组会改变群落代谢及其对宿主生理的潜在影响。我们分析了预测会形成的糖发酵途径和产物,以及益生元诱导的维生素和氨基酸生物合成及降解的变化。这些结果凸显了将全基因组代谢重建方法与基于16S rRNA序列的群落概况相结合的实用性,以提供有关群落代谢的见解。这一过程还为优先在体内分析益生元和草药提供了合理手段,以检验与特定感兴趣疾病的治疗潜力相关的假设。