Ruminants fulfill their energy needs for growth primarily through microbial breakdown of plant biomass in the rumen. Several biotic and abiotic factors influence the efficiency of fiber degradation, which can ultimately impact animal productivity and health. To provide more insight into mechanisms involved in the modulation of fibrolytic activity, a functional DNA microarray targeting genes encoding key enzymes involved in cellulose and hemicellulose degradation by rumen microbiota was designed. Eight carbohydrate-active enzyme (CAZyme) families (GH5, GH9, GH10, GH11, GH43, GH48, CE1, and CE6) were selected which represented 392 genes from bacteria, protozoa, and fungi. The DNA microarray, designated as FibroChip, was validated using target...
Improving microbial degradation of plant cell wall polysaccharides remains one of the highest priori...
Background: A complex community of microorganisms is responsible for efficient plant cell wall diges...
International audienceBackground: A complex community of microorganisms is responsible for efficient...
Ruminants fulfill their energy needs for growth primarily through microbial breakdown of plant bioma...
International audienceRuminants fulfill their energy needs for growth primarily through microbial br...
Dietary fibre degradation is an essential function of microbial digestive ecosystems. In ruminants, ...
Ruminants have a unique ability to derive energy from the degradation of plant polysaccharides throu...
Ruminants have a unique ability to derive energy from the degradation of plant polysaccharides throu...
International audienceThe rumen harbors a great diversity of micro-organisms, comprising prokaryotes...
International audienceThe rumen harbors a great diversity of micro-organisms, comprising prokaryotes...
<div><p>The rumen hosts one of the most efficient microbial systems for degrading plant cell walls, ...
La dégradation des fibres alimentaires est une fonction essentielle des écosystèmes digestifs microb...
Not AvailableThe rumen is a unique natural habitat, exhibiting an unparalleled genetic resource of f...
A complex community of microorganisms is responsible for efficient plant cell wall digestion by many...
The degradation of plant cell walls by ruminants is of major economic importance in the developed as...
Improving microbial degradation of plant cell wall polysaccharides remains one of the highest priori...
Background: A complex community of microorganisms is responsible for efficient plant cell wall diges...
International audienceBackground: A complex community of microorganisms is responsible for efficient...
Ruminants fulfill their energy needs for growth primarily through microbial breakdown of plant bioma...
International audienceRuminants fulfill their energy needs for growth primarily through microbial br...
Dietary fibre degradation is an essential function of microbial digestive ecosystems. In ruminants, ...
Ruminants have a unique ability to derive energy from the degradation of plant polysaccharides throu...
Ruminants have a unique ability to derive energy from the degradation of plant polysaccharides throu...
International audienceThe rumen harbors a great diversity of micro-organisms, comprising prokaryotes...
International audienceThe rumen harbors a great diversity of micro-organisms, comprising prokaryotes...
<div><p>The rumen hosts one of the most efficient microbial systems for degrading plant cell walls, ...
La dégradation des fibres alimentaires est une fonction essentielle des écosystèmes digestifs microb...
Not AvailableThe rumen is a unique natural habitat, exhibiting an unparalleled genetic resource of f...
A complex community of microorganisms is responsible for efficient plant cell wall digestion by many...
The degradation of plant cell walls by ruminants is of major economic importance in the developed as...
Improving microbial degradation of plant cell wall polysaccharides remains one of the highest priori...
Background: A complex community of microorganisms is responsible for efficient plant cell wall diges...
International audienceBackground: A complex community of microorganisms is responsible for efficient...