生物
微生物群
拟杆菌
厚壁菌
肠道菌群
失调
基因组
肠道微生物群
普雷沃菌属
计算生物学
进化生物学
细菌
免疫学
遗传学
基因
16S核糖体RNA
作者
Clémence Frioux,Rebecca Ansorge,Ezgi Özkurt,Chabname Ghassemi Nedjad,Joachim Fritscher,Christopher Quince,Sebastian M. Waszak,Falk Hildebrand
标识
DOI:10.1016/j.chom.2023.05.024
摘要
The human gut microbiome composition is generally in a stable dynamic equilibrium, but it can deteriorate into dysbiotic states detrimental to host health. To disentangle the inherent complexity and capture the ecological spectrum of microbiome variability, we used 5,230 gut metagenomes to characterize signatures of bacteria commonly co-occurring, termed enterosignatures (ESs). We find five generalizable ESs dominated by either Bacteroides, Firmicutes, Prevotella, Bifidobacterium, or Escherichia. This model confirms key ecological characteristics known from previous enterotype concepts, while enabling the detection of gradual shifts in community structures. Temporal analysis implies that the Bacteroides-associated ES is "core" in the resilience of westernized gut microbiomes, while combinations with other ESs often complement the functional spectrum. The model reliably detects atypical gut microbiomes correlated with adverse host health conditions and/or the presence of pathobionts. ESs provide an interpretable and generic model that enables an intuitive characterization of gut microbiome composition in health and disease.
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