The properties and capacities of the ligninolytic enzymes of Daedaleopsis spp. are still unknown. This is the first study on the effect of plant residues and period of cultivation on the properties of Mn-oxidizing peroxidases and laccases of D. confragosa and D. tricolor, as well as their ligninolytic potentials. Wheat straw was the optimal carbon source for synthesis of highly active Mn-dependent peroxidases (4126.9 U/L in D. confragosa and 2037.9 U/L in D. tricolor). However, laccases were the predominant enzymes, and the best inducer of their activity (up 16000.0 U/L) was cherry sawdust. Wheat straw was the most susceptible plant residue to the effect of the enzymes, and extent of lignin degradation was 43.3% after 14 days of fermentatio...
The extracellular enzymes synthesized by Phlebia radiata Fr. 79 (ATCC 64658) under various cultivati...
In recent years, many research on the quantity of lignocellulosic waste have been developed. The pro...
Being the most abundant carbon-containing terrestrial biopolymer, lignocellulose serves as one of th...
The properties and capacities of the ligninolytic enzymes of Daedaleopsis spp. are still unknown. Th...
Biological pretreatment of the lignocellulosic residues, in which white-rot fungi have a crucial rol...
As biological decomposition of plant biomass represents a popular alternative environmental-friendly...
For the last several years, there is an increasing research interest for lignocellulosic biomass bec...
Lignin biodegradation is an attractive approach for producing value-added products. These valuable p...
Trunks and stumps of various deciduous species act as natural habitats for Ganoderma lucidum. The ch...
White-rot fungi produce lignin-degrading enzymes including lignin peroxidase (LiP), manganese (II) p...
Background: Structural component of plant biomass, lignocellulose, is the most abundant renewable re...
Trametes hirsuta is an efficient lignin-degrading species due to its ability to produce laccase and ...
White rot fungi are the only organisms capable to mineralize the lignin to CO2. These fungi posses a...
The production of lignocellulolytic enzymes by eleven basidiomycetes species isolated from two ecosy...
Species of the genus Pleurotus are among the most efficient natural species in lignin degradation be...
The extracellular enzymes synthesized by Phlebia radiata Fr. 79 (ATCC 64658) under various cultivati...
In recent years, many research on the quantity of lignocellulosic waste have been developed. The pro...
Being the most abundant carbon-containing terrestrial biopolymer, lignocellulose serves as one of th...
The properties and capacities of the ligninolytic enzymes of Daedaleopsis spp. are still unknown. Th...
Biological pretreatment of the lignocellulosic residues, in which white-rot fungi have a crucial rol...
As biological decomposition of plant biomass represents a popular alternative environmental-friendly...
For the last several years, there is an increasing research interest for lignocellulosic biomass bec...
Lignin biodegradation is an attractive approach for producing value-added products. These valuable p...
Trunks and stumps of various deciduous species act as natural habitats for Ganoderma lucidum. The ch...
White-rot fungi produce lignin-degrading enzymes including lignin peroxidase (LiP), manganese (II) p...
Background: Structural component of plant biomass, lignocellulose, is the most abundant renewable re...
Trametes hirsuta is an efficient lignin-degrading species due to its ability to produce laccase and ...
White rot fungi are the only organisms capable to mineralize the lignin to CO2. These fungi posses a...
The production of lignocellulolytic enzymes by eleven basidiomycetes species isolated from two ecosy...
Species of the genus Pleurotus are among the most efficient natural species in lignin degradation be...
The extracellular enzymes synthesized by Phlebia radiata Fr. 79 (ATCC 64658) under various cultivati...
In recent years, many research on the quantity of lignocellulosic waste have been developed. The pro...
Being the most abundant carbon-containing terrestrial biopolymer, lignocellulose serves as one of th...