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We have recently shown that the coprophilous model mushroom Coprinopsis cinerea transcribes a broad array of genes encoding defense proteins in the vegetative mycelium and fruiting bodies that target bacterial competitors and animal predators challenging the respective tissues of this fungus. In add...
ORGANISM(S): Coprinopsis cinerea 
Proteomic data from fungi; intracellular-proteome of five of the studied fungi (A. niger, A. nidulans, P. subrubescens, T. reesei and P. chrysosporium) grown on nine different monosaccharide conditions (L-arabinose, D-fructose, D-galacturonicAcid, D-galactose, D-glucuronicAcid, D-glucose, D-mannose,...
ORGANISM(S): Aspergillus Niger, Aspergillus Nidulans, Penicillium Subrubescens, Trichoderma Reesei, Phanerochaete Chrysosporium 
2022-10-05 | MSV000090477 | MassIVE
Validation of metabolic models, extrapolated from the reference sugar catabolism genetic network of Aspergillus niger by using an orthology-based approach, of evolutionarily diverse fungi.
ORGANISM(S): Trichoderma Reesei (ncbitaxon:51453) Penicillium Subrubescens (ncbitaxon:1316194) Aspergillus Niger (ncbitaxon:5061) Phanerochaete Chrysosporium Rp-78 (ncbitaxon:273507) Aspergillus Nidulans (ncbitaxon:162425) 
FKP503 is a non-hyphal mutant strain (smooth-33) that was obtained from multiple passages of its parental strain FKP355. FKP355 and FKP503 are leucine auxotrophic strains: for further investigation prototropic strains FKP391 and FKP514 were constructed. To compare transcriptomic changes, FKP391 and ...
ORGANISM(S): Yarrowia lipolytica 
The complexity of the plant cell walls creates many challenges for microbial decomposition. Clostridium phytofermentans, an anaerobic bacterium isolated from forest soil, directly breaks down and utilizes many plant cell wall carbohydrates. The objective of this research is to understand constrain...
ORGANISM(S): Clostridium phytofermentans 
Extremely thermoacidophilic Crenarchaeota belonging to the family Sulfolobales flourish in hot acidic habitats that are strongly oxidizing. However, the pH extremes of these habitats often exceed the acid tolerance of type species and strains. Here, experimental evolution was used to test whether su...
ORGANISM(S): Sulfolobus solfataricus 
Here, we develop a systems-level approach leveraging powerful next generation sequencing, proteomics and phenotypic studies to rapidly obtain an integrated view of lignocellulose degradation in the earliest free living fungi RNA-seq of Piromyces grown on Glucose, Cellulose, Cellulobiose, Avicel, Fil...
ORGANISM(S): Piromyces sp. Finn 
Validation of metabolic models, extrapolated from the reference sugar catabolism genetic network of Aspergillus niger by using an orthology-based approach, of evolutionarily diverse fungi.
ORGANISM(S): Trichoderma Reesei (ncbitaxon:51453) Penicillium Subrubescens (ncbitaxon:1316194) Aspergillus Niger (ncbitaxon:5061) Phanerochaete Chrysosporium Rp-78 (ncbitaxon:273507) Aspergillus Nidulans (ncbitaxon:162425) 
Lipomyces genome scale model based on the Lipomyces starkeyi NRRL-11557 genome. Published in: Genome-Scale Model Development and Genomic Sequencing of the Oleaginous Clade Lipomyces Frontiers in Bioengineering and Biotechnology Industrial Biotechnology Volume 12 - 2024 | doi: 10.3389/fbioe.2024.135...
2024-03-20 | MODEL2403190001 | BioModels
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