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Microbial Biotechnology|January 25, 2011
Isolation and characterization of Cupriavidus basilensis HMF14 for biological removal of inhibitors from lignocellulosic hydrolysateNick Wierckx, Frank Koopman, Luaine Bandounas, et al.Metabolic Engineering|March 18, 2018
Metabolic engineering of Pseudomonas taiwanensis VLB120 with minimal genomic modifications for high-yield phenol productionBenedikt Wynands, Christoph Lenzen, Maike Otto, et al.Frontiers in Bioengineering and Biotechnology|December 12, 2019
Rational Engineering of Phenylalanine Accumulation in <i>Pseudomonas taiwanensis</i> to Enable High-Yield Production of <i>Trans</i>-CinnamateMaike Otto, Benedikt Wynands, Christoph Lenzen, et al.Applied and Environmental Microbiology|June 19, 2016
Activating Intrinsic Carbohydrate-Active Enzymes of the Smut Fungus Ustilago maydis for the Degradation of Plant Cell Wall ComponentsElena Geiser, Michèle Reindl, Lars M Blank, et al.Metabolic Engineering Communications|June 4, 2024
Improving 5-(hydroxymethyl)furfural (HMF) tolerance of <i>Pseudomonas taiwanensis</i> VLB120 by automated adaptive laboratory evolution (ALE)Thorsten Lechtenberg, Benedikt Wynands, Moritz-Fabian Müller, et al.Essays in Biochemistry|April 16, 2021
Perspectives for the application of Ustilaginaceae as biotech cell factoriesNick Wierckx, Katharina Miebach, Nina Ihling, et al.Engineering in Life Sciences|July 7, 2020
Integrated process development of a reactive extraction concept for itaconic acid and application to a real fermentation brothJannick Gorden, Elena Geiser, Nick Wierckx, et al.ACS Synthetic Biology|July 3, 2015
Tn7-Based Device for Calibrated Heterologous Gene Expression in Pseudomonas putidaSebastian Zobel, Ilaria Benedetti, Lara Eisenbach, et al.Microbial Biotechnology|December 28, 2019
An Ustilago maydis chassis for itaconic acid production without by-productsJohanna Becker, Hamed Hosseinpour Tehrani, Marc Gauert, et al.Journal of Biotechnology|June 30, 2009
Metabolic flux analysis of a phenol producing mutant of Pseudomonas putida S12: verification and complementation of hypotheses derived from transcriptomicsNick Wierckx, Harald J Ruijssenaars, Johannes H de Winde, et al.Pageof 9