A manually curated compendium of expression profiles for the microbial cell factory Corynebacterium glutamicum
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Published:2022-10-01
Issue:1
Volume:9
Page:
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ISSN:2052-4463
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Container-title:Scientific Data
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language:en
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Short-container-title:Sci Data
Author:
Kranz AngelaORCID, Polen TinoORCID, Kotulla ChristianORCID, Arndt Annette, Bosco Graziella, Bussmann Michael, Chattopadhyay Ava, Cramer Annette, Davoudi Cedric-Farhad, Degner Ursula, Diesveld Ramon, Freiherr von Boeselager Raphael, Gärtner Kim, Gätgens Cornelia, Georgi Tobias, Geraths Christian, Haas Sabine, Heyer Antonia, Hünnefeld Max, Ishige Takeru, Kabus Armin, Kallscheuer Nicolai, Kever Larissa, Klaffl Simon, Kleine Britta, Kočan Martina, Koch-Koerfges Abigail, Kraxner Kim J., Krug Andreas, Krüger Aileen, Küberl Andreas, Labib MohamedORCID, Lange Christian, Mack Christina, Maeda Tomoya, Mahr Regina, Majda Stephan, Michel Andrea, Morosov Xenia, Müller Olga, Nanda Arun M., Nickel Jens, Pahlke Jennifer, Pfeifer Eugen, Platzen Laura, Ramp Paul, Rittmann Doris, Schaffer Steffen, Scheele Sandra, Spelberg Stephanie, Schulte Julia, Schweitzer Jens-Eric, Sindelar Georg, Sorger-Herrmann Ulrike, Spelberg Markus, Stansen Corinna, Tharmasothirajan Apilaasha, Ooyen Jan van, van Summeren-Wesenhagen Philana, Vogt Michael, Witthoff Sabrina, Zhu Lingfeng, Eikmanns Bernhard J., Oldiges Marco, Schaumann Georg, Baumgart MeikeORCID, Brocker Melanie, Eggeling Lothar, Freudl Roland, Frunzke JuliaORCID, Marienhagen Jan, Wendisch Volker F.ORCID, Bott MichaelORCID
Abstract
AbstractCorynebacterium glutamicum is the major host for the industrial production of amino acids and has become one of the best studied model organisms in microbial biotechnology. Rational strain construction has led to an improvement of producer strains and to a variety of novel producer strains with a broad substrate and product spectrum. A key factor for the success of these approaches is detailed knowledge of transcriptional regulation in C. glutamicum. Here, we present a large compendium of 927 manually curated microarray-based transcriptional profiles for wild-type and engineered strains detecting genome-wide expression changes of the 3,047 annotated genes in response to various environmental conditions or in response to genetic modifications. The replicates within the 927 experiments were combined to 304 microarray sets ordered into six categories that were used for differential gene expression analysis. Hierarchical clustering confirmed that no outliers were present in the sets. The compendium provides a valuable resource for future fundamental and applied research with C. glutamicum and contributes to a systemic understanding of this microbial cell factory.
Measurement(s)
Gene Expression Analysis
Technology Type(s)
Two Color Microarray
Factor Type(s)
WT condition A vs. WT condition B • Plasmid-based gene overexpression in parental strain vs. parental strain with empty vector control • Deletion mutant vs. parental strain
Sample Characteristic - Organism
Corynebacterium glutamicum
Sample Characteristic - Environment
laboratory environment
Sample Characteristic - Location
Germany
Publisher
Springer Science and Business Media LLC
Subject
Library and Information Sciences,Statistics, Probability and Uncertainty,Computer Science Applications,Education,Information Systems,Statistics and Probability
Reference81 articles.
1. Kinoshita, S., Udaka, S. & Shimono, M. Studies on the amino acid fermentation. Part 1. Production of L-glutamic acid by various microorganisms. The Journal of General and Applied Microbiology 3, 193–205, https://doi.org/10.2323/jgam.3.193 (1957). 2. Eggeling, L. & Bott, M. A giant market and a powerful metabolism: L-lysine provided by Corynebacterium glutamicum. Appl Microbiol Biotechnol 99, 3387–3394, https://doi.org/10.1007/s00253-015-6508-2 (2015). 3. van Ooyen, J., Noack, S., Bott, M., Reth, A. & Eggeling, L. Improved L-lysine production with Corynebacterium glutamicum and systemic insight into citrate synthase flux and activity. Biotechnol Bioeng 109, 2070–2081, https://doi.org/10.1002/bit.24486 (2012). 4. Becker, J., Zelder, O., Häfner, S., Schröder, H. & Wittmann, C. From zero to hero – design-based systems metabolic engineering of Corynebacterium glutamicumfor L-lysine production. Metab Eng 13, 159–168, https://doi.org/10.1016/j.ymben.2011.01.003 (2011). 5. Jin, C. & Bao, J. Lysine Production by Dry Biorefining of Wheat Straw and Cofermentation of Corynebacterium glutamicum. J Agric Food Chem 69, 1900–1906, https://doi.org/10.1021/acs.jafc.0c07902 (2021).
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