Accession | Title | Series type(s) | Organism(s) | Samples | GDS | Supplementary | Contact | Release date |
---|---|---|---|---|---|---|---|---|
Filter | Corynebacterium glutamicum | TXT | ||||||
GSE216733 |
Gene expression in glucose-grown L-pipecolic acid production strains C.glutamicum LPA-1A and LPA-5 compared to the non-L-pipecolic acid-producing strain C. glutamicum LPA-0 [1]
|
6 |
|
Michael Kohlstedt | Jan 01, 2024 | |||
GSE216735 |
Gene expression in glucose-grown L-pipecolic acid production strains C.glutamicum LPA-1A and LPA-5 compared to the non-L-pipecolic acid-producing strain C. glutamicum LPA-0 [2]
|
6 |
|
Michael Kohlstedt | Jan 01, 2024 | |||
GSE216736 |
Gene expression in glucose-grown L-pipecolic acid production strains C.glutamicum LPA-1A and LPA-5 compared to the non-L-pipecolic acid-producing strain C. glutamicum LPA-0
|
12 | Michael Kohlstedt | Jan 01, 2024 | ||||
GSE220713 |
Gene expression patterns of pediocin-producing Corynebacterium glutamicum strains
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6 | Michael Kohlstedt | Mar 08, 2023 | ||||
GSE169361 |
A compendium of expression profiles for Corynebacterium glutamicum ATCC13032 [with raw data]
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|
927 | Tino Polen | Jul 22, 2022 | |||
GSE159887 |
Transcriptional response of Corynebacterium glutamicum ATCC 13032 to 2.5 mM indole
|
2 |
|
Christian Ruckert-Reed | Dec 31, 2020 | |||
GSE159888 |
Transcriptional response of Corynebacterium glutamicum C1 to 3 mM indole-alanine dipeptide
|
6 |
|
Christian Ruckert-Reed | Dec 31, 2020 | |||
GSE143977 |
Anaerobic fermentative metabolism of Corynebacterium glutamicum is hampered by a functional oxidative pentose phosphate pathway
|
6 |
|
Jing Shen | Oct 02, 2020 | |||
GSE123063 |
Temperature shift under anaerobic conditions
|
|
3 | Masayuki Inui | Jun 23, 2020 | |||
GSE122249 |
Function of l-Pipecolic acid as a compatible solute in Corynebacterium glutamicum as the basis for its production under hyperosmolar conditions
|
4 |
|
Fernando Pérez-García | May 31, 2019 | |||
GSE117175 |
Rational engineering of Corynebacterium glutamicum for the production of the dicarboxylic acid glutarate
|
|
3 |
|
Fernando Pérez-García | Nov 20, 2018 | ||
GSE102324 |
Overexpression of sigD in the wild type
|
|
7 | Masayuki Inui | Jul 31, 2018 | |||
GSE102325 |
Transcriptome analysis of the rsdA deletion mutant using the oligo array
|
|
2 | Masayuki Inui | Jul 31, 2018 | |||
GSE102327 |
Transcriptome analysis of the sigD deletion mutant using the oligo array
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|
3 | Masayuki Inui | Jul 31, 2018 | |||
GSE102329 |
Genome-wide analyses of C. glutamicum SigD
|
|
22 | Masayuki Inui | Jul 31, 2018 | |||
GSE87077 |
Comparative analysis of Corynebacterium glutamicum transcriptome in response to expression of Egfp under the change of dissolved oxygen in bioreactor
|
9 |
|
Sun Yang | Sep 20, 2016 | |||
GSE72451 |
Overexpression of sigC in the wild type
|
|
4 | Masayuki Inui | Aug 22, 2016 | |||
GSE72453 |
Genome-wide analyses of C. glutamicum SigC
|
|
14 | Masayuki Inui | Aug 22, 2016 | |||
GSE83413 |
Corynebacterium glutamicum as a powerful host for the production of 5-aminovalerate from glucose fermentation
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|
3 |
|
João M. P. Jorge | Jun 17, 2016 | ||
GSE81695 |
Improved Fermentative Production of Gamma-Aminobutyric Acid via the Putrescine Route: Systems Metabolic Engineering for Production From Glucose, Amino Sugars, and Xylose
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|
3 |
|
João M. P. Jorge | May 21, 2016 |