The bioconversion of lignocellulose in various industrial processes, such as biofuel production, requires the degradation of cellulose. Actinomadura amylolytica YIM 77502T is an aerobic, Gram-positive actinomycete that can efficiently degrade crystalline cellulose by extracellular cellulases. Genomic analysis of A. amylolytica identified 9 cellulase and 11 β-glucosidase genes that could potentially encode proteins that digest cellulose. Extracellular proteome characterization of A. amylolytica cell-free culture supernatant by liquid chromatography tandem mass spectrometry analysis revealed that 4 of these cellulases and 2 of these β-glucosidases functioned during cellulose hydrolysis. Thin-layer chromatography analysis revealed extracellula...
Additional file 1. Figure S1. Multiple sequence alignment of Bgl6 with other glucose tolerant β-gluc...
Demands for renewable and sustainable biopolymers have rapidly increased in the last decades along w...
Abstract Background Cellulose, the most abundant biopolymer on earth, is an alternative for fossil f...
The bioconversion of lignocellulose in various industrial processes, such as biofuel production, req...
The bioconversion of lignocellulose in various industrial processes, such as biofuel production, req...
The bioconversion of lignocellulose in various industrial processes, such as biofuel production, req...
The bioconversion of lignocellulose in various industrial processes, such as biofuel production, req...
The bioconversion of lignocellulose in various industrial processes, such as biofuel production, req...
The bioconversion of lignocellulose in various industrial processes, such as biofuel production, req...
The bioconversion of lignocellulose in various industrial processes, such as biofuel production, req...
The bioconversion of lignocellulose in various industrial processes, such as biofuel production, req...
The bioconversion of lignocellulose in various industrial processes, such as biofuel production, req...
The bioconversion of lignocellulose in various industrial processes, such as biofuel production, req...
<p>β-Glucosidase plays an important role in the degradation of cellulose. In this study, a novel β-g...
β-Glucosidase plays an important role in the degradation of cellulose. In this study, a novel β-gluc...
Additional file 1. Figure S1. Multiple sequence alignment of Bgl6 with other glucose tolerant β-gluc...
Demands for renewable and sustainable biopolymers have rapidly increased in the last decades along w...
Abstract Background Cellulose, the most abundant biopolymer on earth, is an alternative for fossil f...
The bioconversion of lignocellulose in various industrial processes, such as biofuel production, req...
The bioconversion of lignocellulose in various industrial processes, such as biofuel production, req...
The bioconversion of lignocellulose in various industrial processes, such as biofuel production, req...
The bioconversion of lignocellulose in various industrial processes, such as biofuel production, req...
The bioconversion of lignocellulose in various industrial processes, such as biofuel production, req...
The bioconversion of lignocellulose in various industrial processes, such as biofuel production, req...
The bioconversion of lignocellulose in various industrial processes, such as biofuel production, req...
The bioconversion of lignocellulose in various industrial processes, such as biofuel production, req...
The bioconversion of lignocellulose in various industrial processes, such as biofuel production, req...
The bioconversion of lignocellulose in various industrial processes, such as biofuel production, req...
<p>β-Glucosidase plays an important role in the degradation of cellulose. In this study, a novel β-g...
β-Glucosidase plays an important role in the degradation of cellulose. In this study, a novel β-gluc...
Additional file 1. Figure S1. Multiple sequence alignment of Bgl6 with other glucose tolerant β-gluc...
Demands for renewable and sustainable biopolymers have rapidly increased in the last decades along w...
Abstract Background Cellulose, the most abundant biopolymer on earth, is an alternative for fossil f...