ABSTRACT Fungal deconstruction of the plant cell requires a complex orchestration of a wide array of intracellular and extracellular enzymes. In Neurospora crassa, CLR-1, CLR-2, and XLR-1 have been identified as key transcription factors regulating plant cell wall degradation in response to soluble sugars. The XLR-1 regulon was defined using a constitutively active mutant allele, resulting in hemicellulase gene expression and secretion under noninducing conditions. To define genes directly regulated by CLR-1, CLR-2, and XLR-1, we performed chromatin immunoprecipitation and next-generation sequencing (ChIPseq) on epitope-tagged constructs of these three transcription factors. When N. crassa is exposed to plant cell wall material, CLR-1, CLR-...
BackgroundIn filamentous ascomycete fungi, the utilization of alternate carbon sources is influenced...
PART IThe saprotrophic fungus, Neurospora crassa has evolved to be exceptionally good at secreting l...
<div><p>Filamentous fungus <i>Penicillium oxalicum</i> produces diverse lignocellulolytic enzymes, w...
UnlabelledFungal deconstruction of the plant cell requires a complex orchestration of a wide array o...
Cellulose is recalcitrant to deconstruction to glucose for use in fermentation strategies for biofue...
Abstract Background Plant biomass degradation by fungal-derived enzymes is rapidly expanding in econ...
BackgroundPlant biomass degradation by fungal-derived enzymes is rapidly expanding in economic impor...
A substantive transition from an unsustainable fossil material and energy economy to a robust and su...
Identifying nutrients available in the environment and utilizing them in the most efficient manner i...
Filamentous fungi, such as Neurospora crassa, are very efficient in deconstructing plant biomass by ...
This study describes the regulation of genes encoding plant cell wall-degrading enzymes in the prese...
Lessons in Plant Cell Wall Degradation by the Ascomycete Model Fungus, Neurospora crassabyVincent W....
Abstract Filamentous fungi are the main source of enzymes used to degrade lignocellulose to fermenta...
Second-generation or lignocellulosic biofuels are a tangible source of renewable energy, which is cr...
Filamentous fungi that thrive on plant biomass are the major producers of hydrolytic enzymes used to...
BackgroundIn filamentous ascomycete fungi, the utilization of alternate carbon sources is influenced...
PART IThe saprotrophic fungus, Neurospora crassa has evolved to be exceptionally good at secreting l...
<div><p>Filamentous fungus <i>Penicillium oxalicum</i> produces diverse lignocellulolytic enzymes, w...
UnlabelledFungal deconstruction of the plant cell requires a complex orchestration of a wide array o...
Cellulose is recalcitrant to deconstruction to glucose for use in fermentation strategies for biofue...
Abstract Background Plant biomass degradation by fungal-derived enzymes is rapidly expanding in econ...
BackgroundPlant biomass degradation by fungal-derived enzymes is rapidly expanding in economic impor...
A substantive transition from an unsustainable fossil material and energy economy to a robust and su...
Identifying nutrients available in the environment and utilizing them in the most efficient manner i...
Filamentous fungi, such as Neurospora crassa, are very efficient in deconstructing plant biomass by ...
This study describes the regulation of genes encoding plant cell wall-degrading enzymes in the prese...
Lessons in Plant Cell Wall Degradation by the Ascomycete Model Fungus, Neurospora crassabyVincent W....
Abstract Filamentous fungi are the main source of enzymes used to degrade lignocellulose to fermenta...
Second-generation or lignocellulosic biofuels are a tangible source of renewable energy, which is cr...
Filamentous fungi that thrive on plant biomass are the major producers of hydrolytic enzymes used to...
BackgroundIn filamentous ascomycete fungi, the utilization of alternate carbon sources is influenced...
PART IThe saprotrophic fungus, Neurospora crassa has evolved to be exceptionally good at secreting l...
<div><p>Filamentous fungus <i>Penicillium oxalicum</i> produces diverse lignocellulolytic enzymes, w...