2316 Correction to: Aspergillus niger is a superior expression host for the production of bioactive fungal cyclodepsipeptides S. Boecker, S. Grätz, D. Kerwat, L. Adam, D. Schirmer, L. Richter, T. Schütze, D. Petras, R. D. Süssmuth, V. Meyer Fungal Biology and Biotechnology 2018, 5, 10.1186/s40694-018-0051-8
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2122 Highly active promoters and native secretion signals for protein production during extremely low growth rates in Aspergillus niger F. Wanka, M. Arentshorst, T. C. Cairns, T. Jørgensen, A. F. J. Ram, V. Meyer Microbial Cell Factories 2016, 15, 10.1186/s12934-016-0543-2
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2121 Current challenges of research on filamentous fungi in relation to human welfare and a sustainable bio-economy: a white paper V. Meyer, M. R. Andersen, A. A. Brakhage, G. H. Braus, M. X. Caddick, T. C. Cairns, R. P. de Vries, T. Haarmann, K. Hansen, C. Hertz-Fowler, S. Krappmann, U. H. Mortensen, M. A. Peñalva, A. F. J. Ram, R. M. Head Fungal Biology and Biotechnology 2016, 3, 10.1186/s40694-016-0024-8
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2120 A Transcriptome Meta-Analysis Proposes Novel Biological Roles for the Antifungal Protein AnAFP in Aspergillus niger N. Paege, S. Jung, P. Schäpe, D. Müller-Hagen, J. P. Ouedraogo, C. Heiderich, J. Jedamzick, B. M. Nitsche, C. A. van den Hondel, A. F. Ram, V. Meyer PLOS ONE 2016, 11, 10.1371/journal.pone.0165755
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1897 The Cell Factory Aspergillus Enters the Big Data Era: Opportunities and Challenges for Optimising Product Formation. V. Meyer, M. Fiedler, B. Nitsche, R. King Advances in Biochemical Engineering/Biotechnology 2015, 149, 91–132, 10.1007/10_2014_297
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1829 GTP-binding protein Era: a novel gene target for biofuel production G. P. Voshol, V. Meyer, C. A. M. J. J. van den Hondel BMC Biotechnology 2015, 15, 10.1186/s12896-015-0132-1
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1828 Tet-on, or Tet-off, that is the question: Advanced conditional gene expression in Aspergillus F. Wanka, T. Cairns, S. Boecker, C. Berens, A. Happel, X. Zheng, J. Sun, S. Krappmann, V. Meyer Fungal Genetics and Biology 2015, 89, 72–83, 10.1016/j.fgb.2015.11.003
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1827 Rational biosynthetic approaches for the production of new-to-nature compounds in fungi S. Boecker, S. Zobel, V. Meyer, R. D. Süssmuth Fungal Genetics and Biology 2016, 10.1016/j.fgb.2016.02.003
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1809 Reprogramming the Biosynthesis of Cyclodepsipeptide Synthetases to Obtain New Enniatins and Beauvericins S. Zobel, S. Boecker, D. Kulke, D. Heimbach, V. Meyer, R. D. Süssmuth ChemBioChem 2016, 17, 283–287, 10.1002/cbic.201500649
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1596 Systems Approaches to Predict the Functions of Glycoside Hydrolases during the Life Cycle of Aspergillus niger Using Developmental Mutants ΔbrlA and ΔflbA J. M. van Munster, B. M. Nitsche, M. Akeroyd, L. Dijkhuizen, M. J. E. C. van der Maarel, A. F. J. Ram, J. H. Yu PLOS ONE 2015, 10, 10.1371/journal.pone.0116269
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1595 Molecular genetic analysis of vesicular transport in Aspergillus niger reveals partial conservation of the molecular mechanism of exocytosis in fungi M. J. Kwon, M. Arentshorst, M. Fiedler, F. L. M. de Groen, P. J. Punt, V. Meyer, A. F. J. Ram Microbiology 2014, 160, 316–329, 10.1099/mic.0.074252-0
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1594 A bifunctional enzyme from Rhodococcus erythropolis exhibiting secondary alcohol dehydrogenase-catalase activities E. Martinez-Rojas, T. Kurt, U. Schmidt, V. Meyer, L. A. Garbe Applied Microbiology and Biotechnology 2014, 98, 9249–9258, 10.1007/s00253-014-5808-2
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1593 The capacity of Aspergillus niger to sense and respond to cell wall stress requires at least three transcription factors: RlmA, MsnA and CrzA M. R. Fiedler, A. Lorenz, B. M. Nitsche, C. A. van den Hondel, A. F. Ram, V. Meyer Fungal Biology and Biotechnology 2014, 1, 10.1186/s40694-014-0005-8
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1592 Transcriptomics of Industrial Filamentous Fungi: A New View on Regulation, Physiology, and Application. B. Nitsche, V. Meyer Fungal Genomics, The Mycota XIII Nouwrosian M Springer 2014,
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1550 Engineering of Aspergillus niger for the production of secondary metabolites L. Richter, F. Wanka, S. Boecker, D. Storm, T. Kurt, Ö. Vural, R. Süßmuth, V. Meyer Fungal Biology and Biotechnology 2014, 1, 1–13, 10.1186/s40694-014-0004-9
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