Abstract Background The transition to a more environmentally friendly economy has prompted studies of modern biorefineries, including the utilization of low-value lignocellulose. The major challenge facing the widespread application of biorefineries is the high cost of enzymes that can efficiently hydrolyze recalcitrant cellulose to sugars. Penicillium oxalicum produces large amounts of plant-cell-wall-degrading enzymes, but their production is tightly controlled by complex regulatory networks, resulting in low yields of the native enzymes. Regulatory genes have been the targets of genetic engineering to improve enzyme production in microorganisms. In this study, we used transcriptomic profiling and genetic analyses to screen for and identi...
Many filamentous fungi produce plant-polysaccharide-degrading enzymes (PPDE); however, the regulator...
A substantive transition from an unsustainable fossil material and energy economy to a robust and su...
Additional file 5: Figure S3. Functional annotation of secreted proteins as determined using the Kyo...
Abstract Background Lignocellulolytic enzymes are the main enzymes to saccharify lignocellulose from...
Additional file 4: Table S2. List of 108 genes differentially coexpressed on all carbon sources test...
Many Penicillium species produce enzyme systems with good performances in lignocellulose degradation...
Additional file 10: Figure S6. Electrophoretic mobility shift assay showing the interaction between ...
Additional file 11: Figure S7. Electrophoretic mobility shift assay showing the interaction between ...
<div><p>Filamentous fungus <i>Penicillium oxalicum</i> produces diverse lignocellulolytic enzymes, w...
Putative methyltranferase LaeA and LaeA-like proteins, conserved in many filamentous fungi, regulate...
Additional file 10: Figure S6. Activities of crude enzymes from PoxClrB, POX02484, and POX08522 dele...
Many Penicillium species could produce extracellular enzyme systems with good lignocellulose hydroly...
<div><p>Many <em>Penicillium</em> species could produce extracellular enzyme systems with good ligno...
Redesigning the regulatory pathway to enhance cellulase production in Penicillium oxalicum Yao et al
Many Penicillium species could produce extracellular enzyme systems with good lignocellulose hydroly...
Many filamentous fungi produce plant-polysaccharide-degrading enzymes (PPDE); however, the regulator...
A substantive transition from an unsustainable fossil material and energy economy to a robust and su...
Additional file 5: Figure S3. Functional annotation of secreted proteins as determined using the Kyo...
Abstract Background Lignocellulolytic enzymes are the main enzymes to saccharify lignocellulose from...
Additional file 4: Table S2. List of 108 genes differentially coexpressed on all carbon sources test...
Many Penicillium species produce enzyme systems with good performances in lignocellulose degradation...
Additional file 10: Figure S6. Electrophoretic mobility shift assay showing the interaction between ...
Additional file 11: Figure S7. Electrophoretic mobility shift assay showing the interaction between ...
<div><p>Filamentous fungus <i>Penicillium oxalicum</i> produces diverse lignocellulolytic enzymes, w...
Putative methyltranferase LaeA and LaeA-like proteins, conserved in many filamentous fungi, regulate...
Additional file 10: Figure S6. Activities of crude enzymes from PoxClrB, POX02484, and POX08522 dele...
Many Penicillium species could produce extracellular enzyme systems with good lignocellulose hydroly...
<div><p>Many <em>Penicillium</em> species could produce extracellular enzyme systems with good ligno...
Redesigning the regulatory pathway to enhance cellulase production in Penicillium oxalicum Yao et al
Many Penicillium species could produce extracellular enzyme systems with good lignocellulose hydroly...
Many filamentous fungi produce plant-polysaccharide-degrading enzymes (PPDE); however, the regulator...
A substantive transition from an unsustainable fossil material and energy economy to a robust and su...
Additional file 5: Figure S3. Functional annotation of secreted proteins as determined using the Kyo...