[HTML][HTML] A novel efficient β-glucanase from a paddy soil microbial metagenome with versatile activities

Y Zhou, X Wang, W Wei, J Xu, W Wang, Z Xie… - Biotechnology for …, 2016 - Springer
Background Cellulose, an abundant and renewable polysaccharides, constitutes the largest
resource for bioconversion of biofuels. Plant polysaccharides hydrolysis is catalyzed by …

[PDF][PDF] A novel efficient β-glucanase from a paddy soil microbial metagenome with versatile activities

Y Zhou, X Wang, W Wei, J Xu, W Wang, Z Xie, Z Zhang… - 2016 - core.ac.uk
Background: Cellulose, an abundant and renewable polysaccharides, constitutes the largest
resource for bioconversion of biofuels. Plant polysaccharides hydrolysis is catalyzed by …

A novel efficient β-glucanase from a paddy soil microbial metagenome with versatile activities.

Y Zhou, X Wang, W Wei, J Xu, W Wang… - Biotechnology for …, 2016 - europepmc.org
Background Cellulose, an abundant and renewable polysaccharides, constitutes the largest
resource for bioconversion of biofuels. Plant polysaccharides hydrolysis is catalyzed by …

[HTML][HTML] A novel efficient β-glucanase from a paddy soil microbial metagenome with versatile activities

Y Zhou, X Wang, W Wei, J Xu… - Biotechnology …, 2016 - biotechnologyforbiofuels …
Cellulose, an abundant and renewable polysaccharides, constitutes the largest resource for
bioconversion of biofuels. Plant polysaccharides hydrolysis is catalyzed by cellulases, which …

A novel efficient β-glucanase from a paddy soil microbial metagenome with versatile activities

Y Zhou, X Wang, W Wei, J Xu… - Biotechnology for …, 2016 - pubmed.ncbi.nlm.nih.gov
Background Cellulose, an abundant and renewable polysaccharides, constitutes the largest
resource for bioconversion of biofuels. Plant polysaccharides hydrolysis is catalyzed by …

[HTML][HTML] A novel efficient β-glucanase from a paddy soil microbial metagenome with versatile activities

Y Zhou, X Wang, W Wei, J Xu, W Wang… - Biotechnology for …, 2016 - ncbi.nlm.nih.gov
Background Cellulose, an abundant and renewable polysaccharides, constitutes the largest
resource for bioconversion of biofuels. Plant polysaccharides hydrolysis is catalyzed by …

A novel efficient beta-glucanase from a paddy soil microbial metagenome with versatile activities

Z Yu, W Xu, W Wei, X Jimin, W Wei, X Zhongwen… - 2016 - ir.cug.edu.cn
摘要Background: Cellulose, an abundant and renewable polysaccharides, constitutes the
largest resource for bioconversion of biofuels. Plant polysaccharides hydrolysis is catalyzed …

A novel efficient β-glucanase from a paddy soil microbial metagenome with versatile activities

Y Zhou, X Wang, W Wei, J Xu, W Wang, Z Xie… - Biotechnology for …, 2016 - hero.epa.gov
BACKGROUND: Cellulose, an abundant and renewable polysaccharides, constitutes the
largest resource for bioconversion of biofuels. Plant polysaccharides hydrolysis is catalyzed …

[PDF][PDF] A novel efficient β-glucanase from a paddy soil microbial metagenome with versatile activities

Y Zhou, X Wang, W Wei, J Xu, W Wang, Z Xie, Z Zhang… - 2016 - cyberleninka.org
Background: Cellulose, an abundant and renewable polysaccharides, constitutes the largest
resource for bioconversion of biofuels. Plant polysaccharides hydrolysis is catalyzed by …

[PDF][PDF] A novel efficient β-glucanase from a paddy soil microbial metagenome with versatile activities

Y Zhou, X Wang, W Wei, J Xu, W Wang, Z Xie, Z Zhang… - 2016 - researchgate.net
Background: Cellulose, an abundant and renewable polysaccharides, constitutes the largest
resource for bioconversion of biofuels. Plant polysaccharides hydrolysis is catalyzed by …