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Association of Fecal Microbial Diversity and Taxonomy with Selected Enzymatic Functions

机译:粪便微生物多样性和分类学与所选酶功能的关联

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摘要

Few microbial functions have been compared to a comprehensive survey of the human fecal microbiome. We evaluated determinants of fecal microbial β-glucuronidase and β-glucosidase activities, focusing especially on associations with microbial alpha and beta diversity and taxonomy. We enrolled 51 healthy volunteers (26 female, mean age 39) who provided questionnaire data and multiple aliquots of a stool, from which proteins were extracted to quantify β-glucuronidase and β-glucosidase activities, and DNA was extracted to amplify and pyrosequence 16S rRNA gene sequences to classify and quantify microbiome diversity and taxonomy. Fecal β-glucuronidase was elevated with weight loss of at least 5 lb. (P = 0.03), whereas β-glucosidase was marginally reduced in the four vegetarians (P = 0.06). Both enzymes were correlated directly with microbiome richness and alpha diversity measures, directly with the abundance of four Firmicutes Clostridia genera, and inversely with the abundance of two other genera (Firmicutes Lactobacillales Streptococcus and Bacteroidetes Rikenellaceae Alistipes) (all P = 0.05–0.0001). Beta diversity reflected the taxonomic associations. These observations suggest that these enzymatic functions are performed by particular taxa and that diversity indices may serve as surrogates of bacterial functions. Independent validation and deeper understanding of these associations are needed, particularly to characterize functions and pathways that may be amenable to manipulation.
机译:很少有人将微生物功能与人类粪便微生物组的全面调查进行比较。我们评估了粪便微生物β-葡萄糖醛酸苷酶和β-葡萄糖苷酶活性的决定因素,尤其关注与微生物α和β多样性以及分类法的关系。我们招募了51名健康志愿者(26名女性,平均年龄39岁),他们提供了调查表数据和粪便的多个等分试样,从中提取蛋白质来定量β-葡萄糖醛酸苷酶和β-葡萄糖苷酶的活性,并提取DNA来扩增和焦磷酸化16S rRNA。基因序列分类和量化微生物组多样性和分类学。粪便中的β-葡萄糖醛酸苷酶升高,且体重减轻至少5磅(P = 0.03),而四名素食者的β-葡萄糖苷酶略有减少(P = 0.06)。两种酶都直接与微生物组丰富度和α多样性度量相关,与梭菌四个梭菌属的丰度直接相关,而与其他两个菌种(费氏乳杆菌链球菌和拟南芥杆菌的丰度成反比)(所有P = 0.05-0.0001)。 Beta多样性反映了分类学上的联系。这些观察结果表明,这些酶功能是由特定的分类单元执行的,多样性指数可以作为细菌功能的替代。需要对这些关联进行独立验证和更深入的了解,尤其是表征可能适用于操纵的功能和途径。

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