Publikationen
2016
- Kramer, A. ., Labes, A. ., & Imhoff, J. F. (2016). Phylogenetic Relationship and Secondary Metabolite Production of Marine Fungi Producing the Cyclodepsipeptides Scopularide A and B. Marine Biotechnology, 1–9. http://doi.org/10.1007/s10126-016-9707-7
2015
Proteomic Analysis of Anti-Cancerous Scopularide Production by a Marine Microascus brevicaulis Strain and Its UV Mutant
Kramer, A. ., Beck, H. C., Kumar, A. ., Kristensen, L. P., Imhoff, J. F., & Labes, A. . (2015). Proteomic Analysis of Anti-Cancerous Scopularide Production by a Marine Microascus brevicaulis Strain and Its UV Mutant. PLoS ONE, 10, e0140047. Abgerufen von http://oceanrep.geomar.de/30275/Abstract
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Antibiotic activity of microbial strains isolated from Mytilus edulis (Kiel Fjord, Baltic Sea)
Motiei, A. ., Wiese, J. ., Wenzel-Storjohann, A. ., Labes, A. ., Imhoff, J. F., & Gorokhova, E. . (2015). Antibiotic activity of microbial strains isolated from Mytilus edulis (Kiel Fjord, Baltic Sea). In Congress of European Microbiologists. Abgerufen von http://oceanrep.geomar.de/30441/Exportformate
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Identification of Habitat-Specific Biomes of Aquatic Fungal Communities Using a Comprehensive Nearly Full-Length 18S rRNA Dataset Enriched with Contextual Data
Panzer, K. ., Yilmaz, P. ., Weiß, M. ., Reich, L. ., Richter, M. ., Wiese, J. ., … Reich, M. . (2015). Identification of Habitat-Specific Biomes of Aquatic Fungal Communities Using a Comprehensive Nearly Full-Length 18S rRNA Dataset Enriched with Contextual Data. PLoS ONE, 10, e0134377. Abgerufen von http://oceanrep.geomar.de/29516/Abstract
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Lindgomycin, an Unusual Antibiotic Polyketide from a Marine Fungus of the Lindgomycetaceae
Wu, B. ., Wiese, J. ., Labes, A. ., Kramer, A. ., Schmaljohann, R. ., & Imhoff, J. F. (2015). Lindgomycin, an Unusual Antibiotic Polyketide from a Marine Fungus of the Lindgomycetaceae. Marine Drugs, 13, 4617–4632. Abgerufen von http://oceanrep.geomar.de/29518/Abstract
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Nature s Lab for Derivatization: New and Revised Structures of a Variety of Streptophenazines Produced by a Sponge-Derived Streptomyces Strain
Kunz, A. L., Labes, A. ., Wiese, J. ., Bruhn, T. ., Bringmann, G. ., & Imhoff, J. F. (2015). Nature s Lab for Derivatization: New and Revised Structures of a Variety of Streptophenazines Produced by a Sponge-Derived Streptomyces Strain, Online-Ressource.Exportformate
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2014
Malettinin E, an antibacterial and antifungal tropolone produced by a marine Cladosporium strain
Silber, J. ., Ohlendorf, B. ., Labes, A. ., Wenzel-Storjohann, A. ., Näther, C. ., & Imhoff, J. F. (2014). Malettinin E, an antibacterial and antifungal tropolone produced by a marine Cladosporium strain. Frontiers in Marine Science, 1, 1–6. Abgerufen von http://oceanrep.geomar.de/25470/ (Original work published 2024)Abstract
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A Phenotypic Screening Approach to Identify Anticancer Compounds Derived from Marine Fungi
Ellinger, B. ., Silber, J. ., Prashar, A. ., Landskron, J. ., Weber, J. ., Rehermann, S. ., … Imhoff, J. F. (2014). A Phenotypic Screening Approach to Identify Anticancer Compounds Derived from Marine Fungi. ASSAY and Drug Development Technologies, 12, 162–175. Abgerufen von http://oceanrep.geomar.de/24658/ (Original work published 2024)Abstract
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Development and Validation of a Fast and Optimized Screening Method for Enhanced Production of Secondary Metabolites Using the Marine Scopulariopsis brevicaulis Strain LF580 Producing Anti-Cancer Active Scopularide A and B
Kramer, A. ., Paun, L. ., Imhoff, J. F., Kempken, F. ., & Labes, A. . (2014). Development and Validation of a Fast and Optimized Screening Method for Enhanced Production of Secondary Metabolites Using the Marine Scopulariopsis brevicaulis Strain LF580 Producing Anti-Cancer Active Scopularide A and B. PLoS ONE, 9, e103320. Abgerufen von http://oceanrep.geomar.de/25471/ (Original work published Juli 2014)Abstract
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Nature?s Lab for Derivatization: New and Revised Structures of a Variety of Streptophenazines Produced by a Sponge-Derived Streptomyces Strain
Kunz, A. L., Labes, A. ., Wiese, J. ., Bruhn, T. ., Bringmann, G. ., & Imhoff, J. F. (2014). Nature?s Lab for Derivatization: New and Revised Structures of a Variety of Streptophenazines Produced by a Sponge-Derived Streptomyces Strain. Marine Drugs, 12, 1699–1714. Abgerufen von http://oceanrep.geomar.de/24372/ (Original work published März 2014)Abstract
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