Area of research
Plant Science · Molecular Biology
Research interest
Research interests include Biology, Biomass (ecology), Lignin, Genome, Chemistry, and Enzyme.
Carbohydrate esterase family 16 contains fungal hemicellulose acetyl esterases (HAEs) with varying specificity
Comparative Analysis of Enzyme Production Patterns of Lignocellulose Degradation of Two White Rot Fungi: Obba rivulosa and Gelatoporia subvermispora
Discovery and Functional Analysis of a Salicylic Acid Hydroxylase from Aspergillus niger
Conserved white-rot enzymatic mechanism for wood decay in the Basidiomycota genus <i>Pycnoporus</i>
Penicillium subrubescens adapts its enzyme production to the composition of plant biomass
A comparison between the homocyclic aromatic metabolic pathways from plant-derived compounds by bacteria and fungi
Developments and opportunities in fungal strain engineering for the production of novel enzymes and enzyme cocktails for plant biomass degradation
Discovery of Novel <i>p</i>-Hydroxybenzoate-<i>m</i>-hydroxylase, Protocatechuate 3,4 Ring-Cleavage Dioxygenase, and Hydroxyquinol 1,2 Ring-Cleavage Dioxygenase from the Filamentous Fungus <i>Aspergillus niger</i>
Colonies of the fungus <scp> <i>Aspergillus niger</i> </scp> are highly differentiated to adapt to local carbon source variation
Selective Cleavage of Lignin β-<i>O</i>-4 Aryl Ether Bond by β-Etherase of the White-Rot Fungus <i>Dichomitus squalens</i>
<i>Dichomitus squalens</i> partially tailors its molecular responses to the composition of solid wood
Genomic and exoproteomic diversity in plant biomass degradation approaches among Aspergilli
Characterization of a feruloyl esterase from <i>Aspergillus terreus</i> facilitates the division of fungal enzymes from Carbohydrate Esterase family 1 of the carbohydrate‐active enzymes (CAZy) database
Comparative genomics reveals high biological diversity and specific adaptations in the industrially and medically important fungal genus Aspergillus
Expanding the feruloyl esterase gene family of Aspergillus niger by characterization of a feruloyl esterase, FaeC
Comparative analysis of basidiomycete transcriptomes reveals a core set of expressed genes encoding plant biomass degrading enzymes
The draft genome sequence of the ascomycete fungus Penicillium subrubescens reveals a highly enriched content of plant biomass related CAZymes compared to related fungi
Fungal glucuronoyl esterases: Genome mining based enzyme discovery and biochemical characterization
Fungal feruloyl esterases: Functional validation of genome mining based enzyme discovery including uncharacterized subfamilies
Temporal transcriptome analysis of the white-rot fungus Obba rivulosa shows expression of a constitutive set of plant cell wall degradation targeted genes during growth on solid spruce wood
The physiology of Agaricus bisporus in semi-commercial compost cultivation appears to be highly conserved among unrelated isolates
Genetic transformation of the white-rot fungus Dichomitus squalens using a new commercial protoplasting cocktail
Diversity of fungal feruloyl esterases: updated phylogenetic classification, properties, and industrial applications
The molecular response of the white‐rot fungus <scp> <i>D</i> </scp> <i>ichomitus squalens</i> to wood and non‐woody biomass as examined by transcriptome and exoproteome analyses
Penicillium subrubescens is a promising alternative for Aspergillus niger in enzymatic plant biomass saccharification
Fungal Ligninolytic Enzymes and Their Applications
Closely related fungi employ diverse enzymatic strategies to degrade plant biomass
Aromatic Metabolism of Filamentous Fungi in Relation to the Presence of Aromatic Compounds in Plant Biomass
Uncovering the abilities of <scp> <i>A</i> </scp> <i>garicus bisporus</i> to degrade plant biomass throughout its life cycle
Plant-Polysaccharide-Degrading Enzymes from Basidiomycetes