Global Research Landscape and Thematic Evolution of Fungi-Derived Antimicrobials Against Methicillin-Resistant <i>Staphylococcus aureus</i> (MRSA): A Scientometric Analysis. [PDF]
Ong CJN +9 more
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Potential of Indonesian Marine Endophytic Fungi as Extracellular Enzymes Producers. [PDF]
Nurazizah MA +4 more
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Fungi enhance microbial carbon retention in high Arctic fjord sediment. [PDF]
Trejos-Espeleta JC +5 more
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Hidden Fungal Diversity of the Precious Mediterranean Red Coral Corallium rubrum. [PDF]
Prioux C +7 more
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The Origin and Early Evolution of Fungi: Challenges, Inferences, and Principles. [PDF]
Rokas A.
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The rise of marine fungi: Drug discovery's blue frontier. [PDF]
Breyer E, Baltar F.
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Marine Pharmacology in 2022-2023: Marine Compounds with Antibacterial, Antidiabetic, Antifungal, Anti-Inflammatory, Antiprotozoal, Antituberculosis and Antiviral Activities, Affecting the Immune and Nervous Systems, and Other Miscellaneous Mechanisms of Action. [PDF]
Mayer AMS +7 more
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Metabolite diversification via halogen salts enhances biocontrol potential of marine-derived Trichoderma virens B211. [PDF]
Van Nguyen M +6 more
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Studies on marine fungi (termed as ‘marine-derived fungi’ in this paper) have been significantly increasing worldwide because of the critical role displayed by marine fungi in the marine ecosystem and their potential as sources of bioactive compounds. Korea is surrounded by three seas containing abundant marine resources.
Yong Min Kwon +5 more
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Stereoselective reduction of flavanones by marine-derived fungi
Molecular Catalysis, 2021Abstract Biotransformation is an alternative with great potential to modify the structures of natural and synthetic flavonoids. Therefore, the bioreduction of synthetic halogenated flavanones employing marine-derived fungi was described, aiming the synthesis of flavan-4-ols 3a-g with high enantiomeric excesses (ee) of both cis- and trans ...
Iara L. de Matos +4 more
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