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Taxonomic and Functional Characterization of Human Gut Microbes Involved in Dietary Plant Lignan Metabolism.

机译:涉及膳食植物木质素代谢的人类肠道微生物的分类和功能表征。

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摘要

Background: Dietary plant lignans, such as secoisolariciresinol diglucoside (SDG), are metabolized to the enterolignans, enterodiol (END) and enterolactone (ENL), by gut microbes. Evidence suggests that enterolignans may reduce risk of cardiovascular disease and several forms of cancer. Our aim was to characterize the microbial community involved in enterolignan production by using an in vitro batch culture system to enrich for lignan-metabolizing organisms.;Methods: Stool samples from eight participants were incubated separately for ∼1 week with a mineral salts media containing formate, acetate, glucose, and 6.55 muM SDG. Daily secoisolariciresinol (SECO), END, and ENL concentrations were measured using gas chromatography--mass spectrometry (GCMS). Microbial community in initial stool (Day 1) and in vitro-incubated fecal suspensions (final-day) was assessed via Illumina paired-end 16S rRNA gene amplicon and whole-metagenome shotgun sequencing. 16S rRNA gene sequences were taxonomically annotated using an in-house QIIME pipeline. Metagenomic shotgun sequences were taxonomically annotated using MetaPhlAn and functionally annotated using DIAMOND and HUMAnN. Annotation-based alpha diversity, organism abundance, and functional gene abundance were used to assess differences between Day 1 and final-day microbial community composition.;Results: Stool of all 8 participants converted the majority of SDG to ENL by Day 6 (average +/- standard deviation: 88.4% +/- 6.9). In most incubations, Bacteroidetes:Firmicutes ratio increased; methanogenic, deglycosylating, and demethylating organisms were enriched; and KEGG Orthology gene families (KOs) corresponding to beta-glucosidases were present at high levels. In some incubations, Eubacterium limnosum, Akkermansia muciniphila, and KOs corresponding to demethylases, dehydroxylases, dehydrogenases, methane metabolism, the Wood-Ljungdahl pathway, and acetogenic bacterial O-demethylation were enriched.;Conclusions: Organisms and functional genes identified or hypothesized to be involved in lignan metabolism were not unanimously enriched, but sample-specific. These findings may help further elucidate organisms, enzymes, and biochemical pathways involved in lignan metabolism. Future studies with larger sample sizes may help to confirm these results.
机译:背景:膳食植物木脂素,例如癸二异香脂树脂二葡萄糖苷(SDG),被肠道微生物代谢为肠炎木质素,肠二醇(END)和肠内酯(ENL)。有证据表明,肠甾醇可以降低罹患心血管疾病和多种癌症的风险。我们的目的是通过使用体外分批培养系统来富集木脂素代谢生物来表征参与肠溶素生产的微生物群落。方法:将八名参与者的粪便样品与含有甲酸盐的矿物盐培养基分别孵育约1周,乙酸盐,葡萄糖和6.55μMSDG。使用气相色谱-质谱法(GCMS)测量每天的异豆香脂素(SECO),END和ENL浓度。通过Illumina配对末端的16S rRNA基因扩增子和全基因组shot弹枪测序,评估了初始粪便(第1天)和体外培养的粪便悬浮液(最后一天)中的微生物群落。使用内部QIIME管道对16S rRNA基因序列进行分类注释。使用MetaPhlAn在基因组学上注释了元基因shot枪序列,并使用DIAMOND和HUMAnN在功能上进行了注释。基于注释的α多样性,生物体丰度和功能基因丰度被用于评估第1天和最后一天微生物群落组成之间的差异。;结果:所有8位参与者的粪便在第6天之前将大部分SDG转换为ENL(平均值+ /-标准偏差:88.4%+/- 6.9)。在大多数孵化中,拟杆菌:拟杆菌的比率增加;产甲烷,去糖基化和去甲基化的生物富集;和对应于β-葡萄糖苷酶的KEGG Orthology基因家族(KOs)含量很高。在某些孵化中,富集了脱氨酶,脱羟化酶,脱氢酶,甲烷代谢,Wood-Ljungdahl途径和产乙酸细菌O-脱甲基化的嗜酸小杆菌,阿克曼黏菌和KO;结论:确定或假定为要鉴定的生物和功能基因参与木脂素代谢的酶并非一致富集,而是样品特异性的。这些发现可能有助于进一步阐明涉及木脂素代谢的生物,酶和生化途径。将来有较大样本量的研究可能有助于确认这些结果。

著录项

  • 作者

    Elkon, Isaac M.;

  • 作者单位

    University of Washington.;

  • 授予单位 University of Washington.;
  • 学科 Nutrition.;Microbiology.;Biochemistry.;Oncology.
  • 学位 Masters
  • 年度 2015
  • 页码 77 p.
  • 总页数 77
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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