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Corynebacterium glutamicum strain ATCC 21831 is a producer of L-arginine that was created by random mutagenesis. It is resistant to the arginine structural analogue canavanine. In order to identify potential bottlenecks in the biosynthetic pathway that leads to this industrially important amino acid...
2015-10-06 | MTBLS128 | MetaboLights
Background/Objectives: Escherichia coli causes more than 2.8 million infections annually and is widely used as a model organism. Despite its importance, strain-level and handling differences in E. coli lipidomes remain poorly defined. Lipid composition can reveal membrane organization, metabolic sta...
2026-09-23 | MTBLS14565 | MetaboLights
Many bacteria, often associated with eukaryotic hosts and of relevance for biotechnological applications, harbor a multipartite genome composed of more than one replicon. Biotechnologically relevant phenotypes are often encoded by genes residing on the secondary replicons. A synthetic biology approa...
2021-03-17 | MTBLS576 | MetaboLights
Metabolomics is a powerful tool for the identification of genetic targets for bioprocess optimisation. However, in most cases, only the biosynthetic pathway directed to product formation is analysed, limiting the identification of these targets. Some studies have used untargeted metabolomics, allowi...
2023-08-31 | MTBLS6667 | MetaboLights

The purpose of this study was to investigate how C. difficile metabolism differs between strains as a function of diet. We used three C. difficile strains (R20291, Cd4, and Cd10). Each strain was grown in three different media conditions designed to mimic different diet conditio...

2026-09-18 | MTBLS15045 | MetaboLights

We used time-resolved metabolic footprinting, an important technical approach used to monitor changes in extracellular compound concentrations during microbial growth, to study the order of substrate utilization (i.e., substrate preferences) and kinetics of a fast-growing soil isolate, Parabu...

2020-09-28 | MTBLS1692 | MetaboLights
The amount of inorganic carbon represents one of the main environmental factors determining productivity of photoautotrophic organisms. Using the model cyanobacterium Synechocystis sp. PCC 6803, we performed a first metabolome study with cyanobacterial cells shifted from high CO2 (5% in air) into co...
2015-09-14 | MTBLS5 | MetaboLights
This study investigated the metabolite composition of the cell-free supernatant (CFS) produced by Epicoccum layuense strain NJ-1 and the metabolic responses of Botryosphaeria dothidea to NJ-1 CFS treatment using untargeted metabolomics. The dataset includes untargeted metabolomic profiles of NJ-1 CF...
2026-09-05 | MTBLS15566 | MetaboLights

This study employs integrated multi-omics analysis to systematically investigate the proteome and metabolome of marine bacterium Vibrio natriegens strain VCOD-2 (ATCC 14048) under optimal salinity (3% NaCl) and high-salinity stress (8% NaCl) conditions, aiming to reveal the molecular me...

2026-03-18 | MTBLS14070 | MetaboLights
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