Short-term probiotic supplementation affects the diversity, genetics, growth, and interactions of the native gut microbiome

IF 23.7 Q1 MICROBIOLOGY
iMeta Pub Date : 2024-12-16 DOI:10.1002/imt2.253
Xin Shen, Hao Jin, Feiyan Zhao, Lai-Yu Kwok, Zhixin Zhao, Zhihong Sun
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Abstract

The precise mechanisms through which probiotics interact with and reshape the native gut microbiota, especially at the species and genetic levels, remain underexplored. This study employed a high-dose probiotic regimen of Bifidobacterium animalis subsp. lactis [200 billion colony forming units (CFU)/day] over 7 days among healthy participants. Weekly fecal samples were collected for metagenomic sequencing analysis. We found that probiotic intake can significantly enhance the diversity of the gut microbiome and impact single nucleotide variations, growth rates, and network interactions of the resident intestinal bacteria. These adaptive changes in the gut microbiota indicate the swift evolutionary responses of native bacteria to the ecological disturbance presented by probiotic supplementation. Notably, the microbial community appears to undergo rapid and multifaceted ecological adjustments, potentially preceding longer-term evolutionary changes. This knowledge lays the groundwork for further exploration into the mechanisms underlying probiotic-mediated modulation of the gut microbiome, highlighting the necessity of encompassing ecological and evolutionary perspectives in the design and optimization of probiotic applications.

Abstract Image

短期补充益生菌会影响本地肠道微生物群的多样性、遗传学、生长和相互作用。
益生菌与天然肠道菌群相互作用和重塑的确切机制,特别是在物种和遗传水平上,仍未得到充分探索。本研究采用高剂量动物双歧杆菌亚种益生菌方案。乳酸菌[2000亿菌落形成单位(CFU)/天]超过7天的健康参与者。每周收集粪便样本进行宏基因组测序分析。我们发现,摄入益生菌可以显著增强肠道微生物群的多样性,并影响驻留肠道细菌的单核苷酸变异、生长速率和网络相互作用。肠道菌群的这些适应性变化表明了原生细菌对益生菌补充所带来的生态干扰的快速进化反应。值得注意的是,微生物群落似乎经历了快速和多方面的生态调整,可能先于长期的进化变化。这些知识为进一步探索益生菌介导的肠道微生物组调节机制奠定了基础,强调了在益生菌应用的设计和优化中包含生态学和进化观点的必要性。
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来源期刊
CiteScore
10.80
自引率
0.00%
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