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We constructed a bacterial fungal synthetic community and found that it has stronger phosphorus solubilization ability than a single bacterium or fungus. Among them, fungi mainly play a role in phosphorus solubilization, while bacteria can promote fungal phosphorus solubilization. Through metabol...

2026-03-09 | MTBLS14003 | MetaboLights

Arbuscular mycorrhizal fungi-mediated differential composition and metabolism of rhizosphere microbial community. Using Syncoms containg Rhizophagus intraradices, Nigrospora oryzae and Talaromyces verruculosus.

2024-07-29 | MTBLS7299 | MetaboLights
Fungal infections, especially candidiasis and aspergillosis, claim an unacceptably high fatality rate. The energy ATP that is necessary for fungal cell growth and function is synthesized mainly through oxidative phosphorylation, with the key enzyme being F1Fo-ATP synthase. But it remains unknown how...
2021-10-08 | MTBLS3332 | MetaboLights
The Green Revolution (GR) profoundly altered plant–microorganism interactions through widespread agrochemical use and crop breeding. Phytopathogenic fungi present major challenges to agriculture by reducing yield and quality, increasing production costs, and impacting food security and environmental...
2025-06-10 | MTBLS12551 | MetaboLights
Fungal secondary metabolites constitute a rich source of yet undiscovered bioactive compounds. Their production is often silent under standard laboratory conditions, but the production of some compounds can be triggered simply by altering the cultivation conditions. The usage of an organic salt - io...
2022-07-15 | MTBLS5072 | MetaboLights

Background

Antibiotic treatment has a well-established detrimental effect on the gut bacterial composition, but effects on the fungal community are less clear. Bacteria in the lumen of the gastrointestinal tract may limit fungal colonization and invasion. Antibiotic drugs t...

2020-09-28 | MTBLS1846 | MetaboLights
Not available
ORGANISM(S): Exidia glandulosa;Mucidula mucida 
The thermophilic filamentous fungi Myceliophthora thermophila (Sporotrichum thermophile) and Thielavia terrestris are proficient decomposers of cellulose, suggesting that they will be a rich source of thermostable industrial enzymes for lignocellulose degradation. To identify the genes and proteins...
ORGANISM(S): Myceliophthora thermophila 
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