<p>Deconstructing the intricate matrix of cellulose, hemicellulose, and lignin poses a major challenge in biofuel production. In diverse environments in nature, some microbial communities, are able to overcome plant biomass recalcitrance. Identifying key degraders of each component of plant cell wall can help improve biological degradation of plant feedstock. Here, we sequenced the metagenome of lignocellulose-adapted microbial consortia sub-cultured on xylan and alkali lignin media. We observed a drastic shift on community composition after sub-culturing, independently of the original consortia. Proteobacteria relative abundance increased after growth in alkali lignin medium, while Bacteroidetes abundance increased after growth in xylan me...
To develop a targeted metagenomics approach for the analysis of novel multispecies microbial consort...
Lignin is often the most difficult portion of plant biomass to degrade, with fungi generally thought...
Background: Synergistic action of different enzymes is required to complete the degradation of plant...
<p>Deconstructing the intricate matrix of cellulose, hemicellulose, and lignin poses a major challen...
<p>Deconstructing the intricate matrix of cellulose, hemicellulose, and lignin poses a major challen...
<p>Deconstructing the intricate matrix of cellulose, hemicellulose, and lignin poses a major challen...
Plant lignocellulose is the most abundant raw material on the planet and a promising substrate for b...
BackgroundCellulose is the most abundant organic polymer mainly produced by plants in nature. It is ...
Here, we investigated how different plant biomass, and-for one substrate-pH, drive the composition o...
Background: Cellulose is the most abundant organic polymer mainly produced by plants in nature. It i...
The selection of microbes by enrichment on plant biomass has been proposed as an efficient way to de...
Abstract Background Lignocellulose is one of the most abundant forms of fixed carbon in the biospher...
Enriched microbial communities, obtained from environmental samples through selective processes, can...
The production of second generation biofuels from agricultural residues is an attractive alternative...
The aims of this study were to evaluate the microbial diversity of different lignocellulosic biomass...
To develop a targeted metagenomics approach for the analysis of novel multispecies microbial consort...
Lignin is often the most difficult portion of plant biomass to degrade, with fungi generally thought...
Background: Synergistic action of different enzymes is required to complete the degradation of plant...
<p>Deconstructing the intricate matrix of cellulose, hemicellulose, and lignin poses a major challen...
<p>Deconstructing the intricate matrix of cellulose, hemicellulose, and lignin poses a major challen...
<p>Deconstructing the intricate matrix of cellulose, hemicellulose, and lignin poses a major challen...
Plant lignocellulose is the most abundant raw material on the planet and a promising substrate for b...
BackgroundCellulose is the most abundant organic polymer mainly produced by plants in nature. It is ...
Here, we investigated how different plant biomass, and-for one substrate-pH, drive the composition o...
Background: Cellulose is the most abundant organic polymer mainly produced by plants in nature. It i...
The selection of microbes by enrichment on plant biomass has been proposed as an efficient way to de...
Abstract Background Lignocellulose is one of the most abundant forms of fixed carbon in the biospher...
Enriched microbial communities, obtained from environmental samples through selective processes, can...
The production of second generation biofuels from agricultural residues is an attractive alternative...
The aims of this study were to evaluate the microbial diversity of different lignocellulosic biomass...
To develop a targeted metagenomics approach for the analysis of novel multispecies microbial consort...
Lignin is often the most difficult portion of plant biomass to degrade, with fungi generally thought...
Background: Synergistic action of different enzymes is required to complete the degradation of plant...