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The complement system is an important part of the innate defense against invading pathogens. The ability to resist complement-mediated killing is considered to be an important virulence trait for the human-restricted respiratory tract pathogen M. catarrhalis, as most disease-associated M. catarrhali...
ORGANISM(S): Moraxella catarrhalis BBH18 
Lipids play an important role in coffee bean development, coffee brew and in the effects of coffee on human health. They account for around 17% of the dry bean weight and encompass different classes and subclasses, mostly triacylglycerols (TAG) and a minor quantity of phospholipids (PL) and βN-alkan...
2021-11-19 | MTBLS1972 | MetaboLights
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
The common edible mushroom Agaricus bisporus is a basidiomycete that thrives on decaying plant material in the forests and grasslands of North America and Europe. It is adapted to forest litter and contributes to global carbon recycling, depolymerizing cellulose, hemicellulose and lignin in plant bi...
ORGANISM(S): Agaricus bisporus (White button mushroom) 
2015-08-05 | PXD001817 | Pride
The influence of selected pentose catabolic pathway (PCP) deletion strains on growth of plant biomass and re-routing of sugar catabolism was addressed to gain a better understanding of the flexibility of the fungus Aspergillus niger in using plant biomass-derived monomers. The transcriptome, metabol...
ORGANISM(S): Aspergillus Niger (ncbitaxon:5061) 
2020-12-17 | MSV000086614 | MassIVE
The influence of selected pentose catabolic pathway (PCP) deletion strains on growth of plant biomass and re-routing of sugar catabolism was addressed to gain a better understanding of the flexibility of the fungus Aspergillus niger in using plant biomass-derived monomers. The transcriptome, metabol...
ORGANISM(S): Aspergillus Niger (ncbitaxon:5061) 
2020-12-17 | MSV000086614 | GNPS
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) 
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