Integrated culturing, modeling and transcriptomics uncovers complex interactions and emergent behavior in a three-species synthetic gut community.

D'hoe, Kevin; Vet, Stefan; Faust, Karoline; Moens, Frédéric; Falony, Gwen; Gonze, Didier; Lloréns-Rico, Verónica; Gelens, Lendert et al. · Elife · 2018

basic_science · Level V

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Abstract

The composition of the human gut microbiome is well resolved, but predictive understanding of its dynamics is still lacking. Here, we followed a bottom-up strategy to explore human gut community dynamics: we established a synthetic community composed of three representative human gut isolates (<i>Roseburia intestinalis</i> L1-82, <i>Faecalibacterium prausnitzii</i> A2-165 and <i>Blautia hydrogenotrophica</i> S5a33) and explored their interactions under well-controlled conditions in vitro. Systematic mono- and pair-wise fermentation experiments confirmed competition for fructose and cross-feeding of formate. We quantified with a mechanistic model how well tri-culture dynamics was predicted from mono-culture data. With the model as reference, we demonstrated that strains grown in co-culture behaved differently than those in mono-culture and confirmed their altered behavior at the transcriptional level. In addition, we showed with replicate tri-cultures and simulations that dominance in tri-culture sensitively depends on the initial conditions. Our work has important implications for gut microbial community modeling as well as for ecological interaction detection from batch cultures.

Medical subject headings