Cultivation of microbial consortia provides low-complexity communities that can serve as tractable models to understand community dynamics. Time-resolved metagenomics demonstrated that an aerobic cellulolytic consortium cultivated from compost exhibited community dynamics consistent with the definition of an endogenous heterotrophic succession. The genome of the proposed pioneer population, 'Candidatus Reconcilibacillus cellulovorans', possessed a gene cluster containing multidomain glycoside hydrolases (GHs). Purification of the soluble cellulase activity from a 300litre cultivation of this consortium revealed that ∼70% of the activity arose from the 'Ca. Reconcilibacillus cellulovorans' multidomain GHs assembled into cellulase complexes t...
International audienceBackground: Environmental bacteria express a wide diversity of glycoside hydro...
the mining of an Antarctic soil sample by functional metagenomics allowed the isolation of a cold-a...
<div><p>Cellulose degrading enzymes have important functions in the biotechnology industry, includin...
Cultivation of microbial consortia provides low-complexity communities that can serve as tractable m...
Enzymatic hydrolysis of cellulose is a key process in the global carbon cycle and the industrial con...
Glycoside hydrolases (GHs) are key enzymes in the depolymerization of plant-derived cellulose, a pro...
Background: Cellulose is the most abundant organic polymer mainly produced by plants in nature. It i...
Glycoside hydrolases (GHs) are key enzymes in the depolymerization of plant-derived cellulose, a pro...
Many microorganisms contain cellulases that are important for plant cell wall degradation and overal...
Many microorganisms contain cellulases that are important for plant cell wall degradation and overal...
ABSTRACT Glycoside hydrolases (GHs) are key enzymes in the depolymerization of plant-derived cellulo...
BackgroundCellulose is the most abundant organic polymer mainly produced by plants in nature. It is ...
BackgroundCellulose is the most abundant organic polymer mainly produced by plants in nature. It is ...
The enrichment from nature of novel microbial communities with high cellulolytic activity is useful ...
BackgroundCellulose is the most abundant organic polymer mainly produced by plants in nature. It is ...
International audienceBackground: Environmental bacteria express a wide diversity of glycoside hydro...
the mining of an Antarctic soil sample by functional metagenomics allowed the isolation of a cold-a...
<div><p>Cellulose degrading enzymes have important functions in the biotechnology industry, includin...
Cultivation of microbial consortia provides low-complexity communities that can serve as tractable m...
Enzymatic hydrolysis of cellulose is a key process in the global carbon cycle and the industrial con...
Glycoside hydrolases (GHs) are key enzymes in the depolymerization of plant-derived cellulose, a pro...
Background: Cellulose is the most abundant organic polymer mainly produced by plants in nature. It i...
Glycoside hydrolases (GHs) are key enzymes in the depolymerization of plant-derived cellulose, a pro...
Many microorganisms contain cellulases that are important for plant cell wall degradation and overal...
Many microorganisms contain cellulases that are important for plant cell wall degradation and overal...
ABSTRACT Glycoside hydrolases (GHs) are key enzymes in the depolymerization of plant-derived cellulo...
BackgroundCellulose is the most abundant organic polymer mainly produced by plants in nature. It is ...
BackgroundCellulose is the most abundant organic polymer mainly produced by plants in nature. It is ...
The enrichment from nature of novel microbial communities with high cellulolytic activity is useful ...
BackgroundCellulose is the most abundant organic polymer mainly produced by plants in nature. It is ...
International audienceBackground: Environmental bacteria express a wide diversity of glycoside hydro...
the mining of an Antarctic soil sample by functional metagenomics allowed the isolation of a cold-a...
<div><p>Cellulose degrading enzymes have important functions in the biotechnology industry, includin...