Table S1. Strains representing other species of the family Ruminococcaceae, used for comparative purposes in this study. (XLS 17 kb
Figure S6. qPCR analysis of prophage induction in strain F. prausnitzii A2–165. qPCR was performed o...
Faecalibacterium prausnitzii is a commensal bacterium, ubiquitous in the gastrointestinal tracts of ...
Faecalibacterium prausnitzii is a ubiquitous member of the human gut microbiome, constituting up to ...
Table S2. List of 245 orthologous genes in the family Ruminococcaceae used for phylogeny inference. ...
Table S5. List of prophage regions found in the F. prausnitzii genomes and their relationships to th...
Table S4. List of 468 protein orthologues in F. prausnitzii demonstrating differential abundance bet...
Table S3. List of 10,630 protein orthologues encoded by genomes of F. prausnitzii with annotation ac...
Table S6. Distribution of carbohydrate active enzyme conserved domains in the strains of F. prausnit...
Figure S4. Composition of F. prausnitzii pan-, core- and accessory genome. A, Pan- and core genome a...
Figure S2. BLASTn-based pairwise sequence coverage between available 31 complete and draft genomes o...
R scripts and data tables needed to reproduce figures in the manuscript: Comparative analysis of Fa...
Figure S3. De novo orthologous protein groups (nâ=â10,630) encoded in 31âF. prausnitzii genome...
Figure S1. Schematic representation of pairwise comparisons of locations of LCBs in genomes of F. pr...
Figure S5. Heatmap of gene orthologues differentially abundant between the two F. prausnitzii genomo...
R scripts and data tables needed to reproduce figures in the manuscript: Comparative analysis of Fae...
Figure S6. qPCR analysis of prophage induction in strain F. prausnitzii A2–165. qPCR was performed o...
Faecalibacterium prausnitzii is a commensal bacterium, ubiquitous in the gastrointestinal tracts of ...
Faecalibacterium prausnitzii is a ubiquitous member of the human gut microbiome, constituting up to ...
Table S2. List of 245 orthologous genes in the family Ruminococcaceae used for phylogeny inference. ...
Table S5. List of prophage regions found in the F. prausnitzii genomes and their relationships to th...
Table S4. List of 468 protein orthologues in F. prausnitzii demonstrating differential abundance bet...
Table S3. List of 10,630 protein orthologues encoded by genomes of F. prausnitzii with annotation ac...
Table S6. Distribution of carbohydrate active enzyme conserved domains in the strains of F. prausnit...
Figure S4. Composition of F. prausnitzii pan-, core- and accessory genome. A, Pan- and core genome a...
Figure S2. BLASTn-based pairwise sequence coverage between available 31 complete and draft genomes o...
R scripts and data tables needed to reproduce figures in the manuscript: Comparative analysis of Fa...
Figure S3. De novo orthologous protein groups (nâ=â10,630) encoded in 31âF. prausnitzii genome...
Figure S1. Schematic representation of pairwise comparisons of locations of LCBs in genomes of F. pr...
Figure S5. Heatmap of gene orthologues differentially abundant between the two F. prausnitzii genomo...
R scripts and data tables needed to reproduce figures in the manuscript: Comparative analysis of Fae...
Figure S6. qPCR analysis of prophage induction in strain F. prausnitzii A2–165. qPCR was performed o...
Faecalibacterium prausnitzii is a commensal bacterium, ubiquitous in the gastrointestinal tracts of ...
Faecalibacterium prausnitzii is a ubiquitous member of the human gut microbiome, constituting up to ...