BACKGROUND:Enzymatic plant biomass degradation by fungi is a highly complex process and one of the leading challenges in developing a biobased economy. Some industrial fungi (e.g. Aspergillus niger) have a long history of use with respect to plant biomass degradation and for that reason have become 'model' species for this topic. A. niger is a major industrial enzyme producer that has a broad ability to degrade plant based polysaccharides. A. niger wild-type, the (hemi-)cellulolytic regulator (xlnR) and xylulokinase (xkiA1) mutant strains were grown on a monocot (corn stover, CS) and dicot (soybean hulls, SBH) substrate. The xkiA1 mutant is unable to utilize the pentoses D-xylose and L-arabinose and the polysaccharide xylan, and was previou...
A key challenge in the production of second generation biofuels is the conversion of lignocellulosic...
Fungi produce a wide range of enzymes that allow them to grow on diverse plant biomass. Wheat bran i...
A key challenge in the production of second generation biofuels is the conversion of lignocellulosic...
BACKGROUND: Enzymatic plant biomass degradation by fungi is a highly complex process and one of the ...
Enzymatic plant biomass degradation by fungi is a highly complex process and one of the leading chal...
Enzymatic plant biomass degradation by fungi is a highly complex process and one of the leading chal...
Abstract Background The Aspergillus niger genome cont...
Background: The Aspergillus niger genome contains a large repertoire of genes encoding carbohydrate ...
Abstract Background The Aspergillus niger genome contains a large repertoire of genes encoding carbo...
AbstractThe interest in the conversion of plant biomass to renewable fuels such as bioethanol has le...
Fungi produce a wide range of enzymes that allow them to grow on diverse plant biomass. Wheat bran i...
Summary Fungi produce a wide range of enzymes that allow them to grow on diverse plant biomass. Whea...
Fungi produce a wide range of enzymes that allow them to grow on diverse plant biomass. Wheat bran i...
Fungi produce a wide range of enzymes that allow them to grow on diverse plant biomass. Wheat bran i...
Fungi produce a wide range of enzymes that allow them to grow on diverse plant biomass. Wheat bran i...
A key challenge in the production of second generation biofuels is the conversion of lignocellulosic...
Fungi produce a wide range of enzymes that allow them to grow on diverse plant biomass. Wheat bran i...
A key challenge in the production of second generation biofuels is the conversion of lignocellulosic...
BACKGROUND: Enzymatic plant biomass degradation by fungi is a highly complex process and one of the ...
Enzymatic plant biomass degradation by fungi is a highly complex process and one of the leading chal...
Enzymatic plant biomass degradation by fungi is a highly complex process and one of the leading chal...
Abstract Background The Aspergillus niger genome cont...
Background: The Aspergillus niger genome contains a large repertoire of genes encoding carbohydrate ...
Abstract Background The Aspergillus niger genome contains a large repertoire of genes encoding carbo...
AbstractThe interest in the conversion of plant biomass to renewable fuels such as bioethanol has le...
Fungi produce a wide range of enzymes that allow them to grow on diverse plant biomass. Wheat bran i...
Summary Fungi produce a wide range of enzymes that allow them to grow on diverse plant biomass. Whea...
Fungi produce a wide range of enzymes that allow them to grow on diverse plant biomass. Wheat bran i...
Fungi produce a wide range of enzymes that allow them to grow on diverse plant biomass. Wheat bran i...
Fungi produce a wide range of enzymes that allow them to grow on diverse plant biomass. Wheat bran i...
A key challenge in the production of second generation biofuels is the conversion of lignocellulosic...
Fungi produce a wide range of enzymes that allow them to grow on diverse plant biomass. Wheat bran i...
A key challenge in the production of second generation biofuels is the conversion of lignocellulosic...