Chassis organism from Corynebacterium glutamicum – a top-down approach to identify and delete irrelevant gene clusters
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S. Noack | M. Baumgart | W. Wiechert | J. Kalinowski | R. Krämer | V. Wendisch | M. Bott | C. Rückert | G. Seibold | Julia Frunzke | Simon Unthan | A. Radek | M. Herbst | Daniel Siebert | Natalie Brühl | A. Bartsch | Kay Marin | S. Hans | R. Krämer | Stephan Hans
[1] T. Wood,et al. Metabolic engineering of Escherichia coli to enhance acetol production from glycerol , 2014, Applied Microbiology and Biotechnology.
[2] T. Wood,et al. Metabolic engineering of Escherichia coli to enhance hydrogen production from glycerol , 2014, Applied Microbiology and Biotechnology.
[3] Wolfgang Wiechert,et al. Process inhomogeneity leads to rapid side product turnover in cultivation of Corynebacterium glutamicum , 2014, Microbial Cell Factories.
[4] J. Kalinowski,et al. Genome sequence of the squalene-degrading bacterium Corynebacterium terpenotabidum type strain Y-11T (= DSM 44721T) , 2013, Standards in genomic sciences.
[5] J. Kalinowski,et al. Comprehensive analysis of the Corynebacterium glutamicum transcriptome using an improved RNAseq technique , 2013, BMC Genomics.
[6] J. Kalinowski,et al. Genome sequence of the marine bacterium Corynebacterium maris type strain Coryn-1T (= DSM 45190T) , 2013, Standards in genomic sciences.
[7] S. Noack,et al. Construction of a Prophage-Free Variant of Corynebacterium glutamicum ATCC 13032 for Use as a Platform Strain for Basic Research and Industrial Biotechnology , 2013, Applied and Environmental Microbiology.
[8] Harris H. Wang,et al. Genome-scale engineering for systems and synthetic biology , 2013, Molecular systems biology.
[9] J. Kalinowski,et al. Genome sequence of the halotolerant bacterium Corynebacterium halotolerans type strain YIM 70093T (= DSM 44683T) , 2012, Standards in genomic sciences.
[10] D. Schomburg,et al. Analysis of in vivo function of predicted isoenzymes:a metabolomic approach. , 2012, Omics : a journal of integrative biology.
[11] V. M. dos Santos,et al. Streamlining genomes: toward the generation of simplified and stabilized microbial systems. , 2012, Current opinion in biotechnology.
[12] M. Inui,et al. Postgenomic approaches to using corynebacteria as biocatalysts. , 2012, Annual review of microbiology.
[13] C. Wittmann,et al. Bio-based production of chemicals, materials and fuels -Corynebacterium glutamicum as versatile cell factory. , 2012, Current opinion in biotechnology.
[14] J. Blom,et al. Complete genome sequence, lifestyle, and multi-drug resistance of the human pathogen Corynebacterium resistens DSM 45100 isolated from blood samples of a leukemia patient , 2012, BMC Genomics.
[15] A. Tauch,et al. Complete genome sequence of Corynebacterium variabile DSM 44702 isolated from the surface of smear-ripened cheeses and insights into cheese ripening and flavor generation , 2011, BMC Genomics.
[16] Genome Sequence of Corynebacterium nuruki S6-4T, Isolated from Alcohol Fermentation Starter , 2011, Journal of bacteriology.
[17] Suhua Chang,et al. Synthetic biology: From the first synthetic cell to see its current situation and future development , 2011, Chinese science bulletin = Kexue tongbao.
[18] Víctor de Lorenzo,et al. Beware of metaphors: Chasses and orthogonality in synthetic biology , 2011, Bioengineered bugs.
[19] Y. Zhuo,et al. Engineering of a genome-reduced host: practical application of synthetic biology in the overproduction of desired secondary metabolites , 2010, Protein & Cell.
[20] Thomas H Segall-Shapiro,et al. Creation of a Bacterial Cell Controlled by a Chemically Synthesized Genome , 2010, Science.
[21] L. Hayflick,et al. Highlights of mycoplasma research--an historical perspective. , 2010, Biologicals : journal of the International Association of Biological Standardization.
[22] Satoshi Omura,et al. Genome-minimized Streptomyces host for the heterologous expression of secondary metabolism , 2010, Proceedings of the National Academy of Sciences.
[23] Alexander Goesmann,et al. EDGAR: A software framework for the comparative analysis of prokaryotic genomes , 2009, BMC Bioinformatics.
[24] B. Eikmanns,et al. Acetohydroxyacid Synthase, a Novel Target for Improvement of l-Lysine Production by Corynebacterium glutamicum , 2008, Applied and Environmental Microbiology.
[25] S. Kanaya,et al. Enhanced Recombinant Protein Productivity by Genome Reduction in Bacillus subtilis , 2008, DNA research : an international journal for rapid publication of reports on genes and genomes.
[26] N. Costantino,et al. E. coli genome manipulation by P1 transduction. , 2007, Current protocols in molecular biology.
[27] R Takors,et al. Systems biology for industrial strains and fermentation processes--example: amino acids. , 2007, Journal of biotechnology.
[28] K. Brinkrolf,et al. The transcriptional regulatory network of the amino acid producer Corynebacterium glutamicum. , 2007, Journal of biotechnology.
[29] M. Inui,et al. Comparative analysis of the Corynebacterium glutamicum group and complete genome sequence of strain R. , 2007, Microbiology.
[30] Random segment deletion based on IS31831 and Cre/loxP excision system in Corynebacterium glutamicum , 2007, Applied Microbiology and Biotechnology.
[31] W. Wiechert,et al. Emerging Corynebacterium glutamicum systems biology. , 2006, Journal of biotechnology.
[32] F. Blattner,et al. Emergent Properties of Reduced-Genome Escherichia coli , 2006, Science.
[33] M. Inui,et al. High-Throughput Transposon Mutagenesis of Corynebacterium glutamicum and Construction of a Single-Gene Disruptant Mutant Library , 2006, Applied and Environmental Microbiology.
[34] A. Goesmann,et al. Complete Genome Sequence and Analysis of the Multiresistant Nosocomial Pathogen Corynebacterium jeikeium K411, a Lipid-Requiring Bacterium of the Human Skin Flora , 2005, Journal of bacteriology.
[35] Masayuki Inui,et al. Large-Scale Engineering of the Corynebacterium glutamicum Genome , 2005, Applied and Environmental Microbiology.
[36] S. Udaka,et al. Studies on the amino acid fermentation. Part 1. Production of L-glutamic acid by various microorganisms. , 2004, The Journal of general and applied microbiology.
[37] B. Barrell,et al. The complete genome sequence and analysis of Corynebacterium diphtheriae NCTC13129. , 2003, Nucleic acids research.
[38] A. Goesmann,et al. The complete Corynebacterium glutamicum ATCC 13032 genome sequence and its impact on the production of L-aspartate-derived amino acids and vitamins. , 2003, Journal of biotechnology.
[39] E. Kimura,et al. Comparative complete genome sequence analysis of the amino acid replacements responsible for the thermostability of Corynebacterium efficiens. , 2003, Genome research.
[40] R. Giegerich,et al. GenDB--an open source genome annotation system for prokaryote genomes. , 2003, Nucleic acids research.
[41] M. Bott,et al. Molecular analysis of the cytochrome bc1-aa3 branch of the Corynebacterium glutamicum respiratory chain containing an unusual diheme cytochrome c1 , 2001, Archives of Microbiology.
[42] J. Kalinowski,et al. Expression of the Corynebacterium glutamicum panD Gene Encoding l-Aspartate-α-Decarboxylase Leads to Pantothenate Overproduction in Escherichia coli , 1999, Applied and Environmental Microbiology.
[43] P. Green,et al. Consed: a graphical tool for sequence finishing. , 1998, Genome research.
[44] C. Condon,et al. rRNA operon multiplicity in Escherichia coli and the physiological implications of rrn inactivation , 1995, Journal of bacteriology.
[45] H. Sahm,et al. Isoleucine synthesis in Corynebacterium glutamicum: molecular analysis of the ilvB-ilvN-ilvC operon , 1993, Journal of bacteriology.
[46] S. Udaka,et al. STUDIES ON THE AMINO ACID FERMENTATION , 1957 .