毛螺菌科
瘤胃球菌
生物
鞣花酸
蔷薇花
真细菌
肠内酯
粪便
肠道菌群
食品科学
阿克曼西亚
UniFrac公司
多酚
生物化学
微生物学
细菌
乳酸菌
16S核糖体RNA
遗传学
厚壁菌
发酵
基因
抗氧化剂
雌激素
植物雌激素
作者
Huijia Liu,John Birk,Anthony A. Provatas,Haleh Vaziri,Nuoxi Fan,Daniel W. Rosenberg,Raad Z. Gharaibeh,Christian Jobin
标识
DOI:10.1186/s12866-024-03626-5
摘要
This study is to investigate the relationship between the intestinal microbiota and urine levels of the ellagic acid-derived polyphenols, the urolithins, in a cohort of subjects following a three-week walnut dietary intervention. We longitudinally collected fecal and urine samples from 39 subjects before and after walnut consumption (2 oz per day for 21 days). 16S RNA gene sequencing was performed on fecal DNA to study the association between microbiota composition and the levels of nine urolithin metabolites, which were measured using UHPLC/Q-TOF-MS/MS. Fecal microbial composition was found to be significantly different between pre- and post-walnut intervention (beta diversity, FDR-p = 0.018; alpha diversity, p = 0.018). Roseburia, Rothia, Parasutterella, Lachnospiraceae UCG-004, Butyricicoccus, Bilophila, Eubacterium eligens, Lachnospiraceae UCG-001, Gordonibacter, Paraprevotella, Lachnospira, Ruminococcus torques, and Sutterella were identified as the 13 most significantly enriched genera after daily intake of walnuts. We observed 26 genera that were significantly associated with 7 urolithin metabolites, with 22 genera positively correlating after walnut supplementation (FDR-p ≤ 0.05). PICRUSt analysis showed that several inferred KEGG orthologs were associated with 4 urolithin metabolites after walnut intake. In this study, we found that walnut supplementation altered urolithin metabolites, which associates with specific changes in bacterial taxa and inferred functional contents.
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