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Abstract This study focused on elucidating the lignocellulose degradation mechanism of Pholiota adiposa strain YAHS, aiming to provide theoretical basis and microbial resources for straw biorefining. Using the aniline blue-guaiacol plate screening method, 11 fungal strains were isolated from the ...

2025-10-12 | MTBLS13121 | MetaboLights
The polysaccharide content of T. fuciformis grown on a Cyclobalanopsis substrate (TY3) was significantly higher than those grown on a mixed substrate (TF1) made of wheat bran and cottonseed hull. Metabolomics and proteomics were used to assess the effects of the lignoce...
2025-07-08 | MTBLS12694 | MetaboLights
Freshwater ecosystems can be largely affected by neighboring agriculture fields where potential fertilizer nitrate run-off may leach into surrounding water bodies. To counteract this eutrophic driver, farmers often utilize denitrifying woodchip bioreactors (WBRs) in which a consortium of microorgani...
ORGANISM(S): Bacteria Archaea 
2024-10-21 | PXD050137 | Pride
Lignocellulose degrading bacterial community Raw sequence reads
lignocellulose-degrading enrichment culture Raw sequence reads
lignocellulose-degrading bacterial communities in intertidal zones

Bamboo rats (Rhizomys pruinosus) are among the few mammals that lives on a bamboo-based diet which is mainly composed of lignocellulose. However, the mechanisms of adaptation of their gut microbiome and metabolic systems in the degradation of lignocellulose are largely unknown. Here, we ...

2022-04-22 | MTBLS4161 | MetaboLights
Anthropogenic activities such as urbanization and agriculture can potentially pose a threat to neighboring freshwaters through nitrate and phosphorous contamination, which over time may lead to lake eutrophication. In such nitrogen-polluted environments, oxygen is depleted, and plants die and decomp...
ORGANISM(S): Bacteria 
2026-04-30 | PXD069160 | Pride
Lignocellulose fractionation by microbial consortia
Characterization of secretome of two white rot and two brown rot fungal species grown on aspen. Goal is to utilize temporal sampling to assist in elucidating lignocellulose degradation mechanism
ORGANISM(S): Trametes versicolor Postia placenta Gloeophyllum trabeum (Brown rot fungus) Serpula lacrymans 
2018-07-16 | PXD009480 | Pride
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