This work presents a novel in silico approach to the prediction and characterization of the glycolytic capacities of the beneficial intestinal bacterium Faecalibacterium prausnitzii. Available F. prausnitzii genomes were explored taking the glycolytic capacities of F. prausnitzii SL3/3 and F. prausnitzii L2-6 as reference. The comparison of the generated glycolytic profiles offered insights into the particular capabilities of F. prausnitzii SL3/3 and F. prausnitzii L2-6 as well as the potential of the rest of strains. Glycoside hydrolases were mostly detected in the pathways responsible for the starch and sucrose metabolism and the biosynthesis of secondary metabolites, but this analysis also identified some other potentially interesting, b...
Table S6. Distribution of carbohydrate active enzyme conserved domains in the strains of F. prausnit...
International audienceFaecalibacterium prausnitzii is a major member of the Firmicutes phylum and on...
The Gram-positive bacterium Cellulomonas fimi produces a large array of carbohydrate-active enzymes....
This work presents a novel in silico approach to the prediction and characterization of the glycolyt...
This work presents a novel in silico approach to the prediction and characterization of the glycolyt...
This work presents a novel in silico approach to the prediction and characterization of the glycolyt...
This work presents a novel in silico approach to the prediction and characterization of the glycolyt...
This work presents a novel in silico approach to the prediction and characterisation of the glycolyt...
The human gut microbiota plays a central role in human well-being and disease. In this study, we pre...
Faecalibacterium prausnitzii is a beneficial human gut microbe and a candidate for next-generation p...
The human gut microbiota plays a central role in human well-being and disease. In this study, we pre...
Glycoside hydrolases are responsible for the enzymatic deconstruction of complex carbohydrates. Most...
Glycoside hydrolases are responsible for the enzymatic deconstruction of complex carbohydrates. Most...
Faecalibacterium prausnitzii is a major member of the Firmicutes phylum and one of the most abundant...
Limitations on the cultivation of a majority of naturally occurring microbes have spurred the rise o...
Table S6. Distribution of carbohydrate active enzyme conserved domains in the strains of F. prausnit...
International audienceFaecalibacterium prausnitzii is a major member of the Firmicutes phylum and on...
The Gram-positive bacterium Cellulomonas fimi produces a large array of carbohydrate-active enzymes....
This work presents a novel in silico approach to the prediction and characterization of the glycolyt...
This work presents a novel in silico approach to the prediction and characterization of the glycolyt...
This work presents a novel in silico approach to the prediction and characterization of the glycolyt...
This work presents a novel in silico approach to the prediction and characterization of the glycolyt...
This work presents a novel in silico approach to the prediction and characterisation of the glycolyt...
The human gut microbiota plays a central role in human well-being and disease. In this study, we pre...
Faecalibacterium prausnitzii is a beneficial human gut microbe and a candidate for next-generation p...
The human gut microbiota plays a central role in human well-being and disease. In this study, we pre...
Glycoside hydrolases are responsible for the enzymatic deconstruction of complex carbohydrates. Most...
Glycoside hydrolases are responsible for the enzymatic deconstruction of complex carbohydrates. Most...
Faecalibacterium prausnitzii is a major member of the Firmicutes phylum and one of the most abundant...
Limitations on the cultivation of a majority of naturally occurring microbes have spurred the rise o...
Table S6. Distribution of carbohydrate active enzyme conserved domains in the strains of F. prausnit...
International audienceFaecalibacterium prausnitzii is a major member of the Firmicutes phylum and on...
The Gram-positive bacterium Cellulomonas fimi produces a large array of carbohydrate-active enzymes....