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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) 
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
To identify genes differentially expressed in the fatbody of Drosphila melanogaster bigmax mutants, a loss-of-function allele was generated by P-element mobilization. Mutant and wildtype first instar larvae were raised on two different sources of food, control and high-sugar media. When the animals ...
ORGANISM(S): Drosophila melanogaster 
The development of microbial bioproduction is challenged by the complexity and variability of industrial feedstocks. This study aimed to systematically and simultaneously optimize catabolism of multiple sugars present in common renewable lignocellulose by adaptive laboratory evolution (ALE) using dy...
ORGANISM(S): Pseudomonas putida KT2440 
2026-06-29 | PXD055215 | Pride
Proteomes of Robust Yarrowia lipolytica Isolates Cultivated in Biomass Hydrolysate Reveal Key Processes Impacting Sugar Utilization and Lipid Degradation
ORGANISM(S): Yarrowia Lipolytica (ncbitaxon:4952) 
2020-08-11 | MSV000085941 | MassIVE
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 global transcriptome of the wild type Lactobacillus acidophilus NCFM strain (NCK56) was measured during exponential growth on 11 prebiotic carbohydrates and glucose to identify the specific gene cluster differentially upregulated in response to each carbohydrate. Oligoarray hybridization experim...
ORGANISM(S): Lactobacillus acidophilus NCFM 
Re-routing of sugar catabolism provides a better insight into fungal flexibility in using plant biomass-derived monomers as substrates
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) 
Degradation of plant biomass to fermentable sugars is of critical importance for the use of plant materials for biofuels. Filamentous fungi are ubiquitous organisms and major plant biomass degraders. Single colonies of some fungal species can colonize massive areas as large as five soccer stadia.Dur...
ORGANISM(S): Aspergillus niger 
2015-09-09 | PXD002130 | Pride
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