Filamentous fungi are powerful producers of hydrolytic enzymes for the deconstruction of plant cell wall polysaccharides. However, the central question of how these sugars are perceived in the context of the complex cell wall matrix remains largely elusive. To address this question in a systematic fashion we performed an extensive comparative systems analysis of how the model filamentous fungus Neurospora crassa responds to the three main cell wall polysaccharides: pectin, hemicellulose and cellulose. We found the pectic response to be largely independent of the cellulolytic one with some overlap to hemicellulose, and in its extent surprisingly high, suggesting advantages for the fungus beyond being a mere carbon source. Our approach furthe...
The cost of cellulose degrading enzymes is still a major barrier to the economical production of liq...
Plant biomass degradation by fungi requires a diverse set of secreted enzymes and significantly cont...
Neurospora crassa colonizes burnt grasslands and metabolizes both cellulose and hemicellulose from p...
Filamentous fungi are powerful producers of hydrolytic enzymes for the deconstruction of plant cell ...
Filamentous fungi, such as Neurospora crassa, are very efficient in deconstructing plant biomass by ...
Improving cellulolytic enzyme production by plant biomass degrading fungi holds great potential in r...
It is essential for microbes to acquire information about their environment. Fungi use soluble degra...
ABSTRACT It is essential for microbes to acquire information about their environment. Fungi use solu...
Abstract Filamentous fungi are the main source of enzymes used to degrade lignocellulose to fermenta...
BackgroundPlant biomass degradation by fungal-derived enzymes is rapidly expanding in economic impor...
Abstract Background Plant biomass degradation by fungal-derived enzymes is rapidly expanding in econ...
Neurospora crassa colonizes burnt grasslands in the wild and metabolizes both cellulose and hemicell...
Lessons in Plant Cell Wall Degradation by the Ascomycete Model Fungus, Neurospora crassabyVincent W....
Identifying nutrients available in the environment and utilizing them in the most efficient manner i...
Fungi are found in all natural and artificial biotopes and can use highly diverse carbon sources. Th...
The cost of cellulose degrading enzymes is still a major barrier to the economical production of liq...
Plant biomass degradation by fungi requires a diverse set of secreted enzymes and significantly cont...
Neurospora crassa colonizes burnt grasslands and metabolizes both cellulose and hemicellulose from p...
Filamentous fungi are powerful producers of hydrolytic enzymes for the deconstruction of plant cell ...
Filamentous fungi, such as Neurospora crassa, are very efficient in deconstructing plant biomass by ...
Improving cellulolytic enzyme production by plant biomass degrading fungi holds great potential in r...
It is essential for microbes to acquire information about their environment. Fungi use soluble degra...
ABSTRACT It is essential for microbes to acquire information about their environment. Fungi use solu...
Abstract Filamentous fungi are the main source of enzymes used to degrade lignocellulose to fermenta...
BackgroundPlant biomass degradation by fungal-derived enzymes is rapidly expanding in economic impor...
Abstract Background Plant biomass degradation by fungal-derived enzymes is rapidly expanding in econ...
Neurospora crassa colonizes burnt grasslands in the wild and metabolizes both cellulose and hemicell...
Lessons in Plant Cell Wall Degradation by the Ascomycete Model Fungus, Neurospora crassabyVincent W....
Identifying nutrients available in the environment and utilizing them in the most efficient manner i...
Fungi are found in all natural and artificial biotopes and can use highly diverse carbon sources. Th...
The cost of cellulose degrading enzymes is still a major barrier to the economical production of liq...
Plant biomass degradation by fungi requires a diverse set of secreted enzymes and significantly cont...
Neurospora crassa colonizes burnt grasslands and metabolizes both cellulose and hemicellulose from p...