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Yeasts constitute a dietary source for the spotted wing drosophila (SWD) and produce compounds that attract these flies. The study of the chemical composition of the yeast communities associated with SWD should therefore help to understand the relationship between the biology of the insect and the y...
2021-02-05 | MTBLS1955 | MetaboLights
Here we report the design, construction and characterization of a 770 Kb synthetic yeast chromosome II (synII). With the UPLC-MS method, we demonstrated synII maintains a nearly wild-type phenotype and fitness despite hundreds of designer editing to it. Our phenomics, transcriptomics, proteomics dat...
2016-10-13 | MTBLS296 | MetaboLights

Genetic interactions are fundamental to the architecture of complex traits, yet the molecular mechanisms by which variant combinations influence cellular pathways remain poorly understood. Here, we answer the question of whether interactions between genetic variants can activate unique pathways a...

2025-07-22 | MTBLS12761 | MetaboLights

Non-target analysis based on high resolution mass spectrometry calls for quality controls to validate analytical workflows. So far no community-wide used quality control material has been established in metabolomics. In this work, we propose ethanolic yeast extracts derived from Pichia pastoris i...

2020-09-29 | MTBLS1782 | MetaboLights
Saccharomyces cerevisiae is a eukaryotic model organism widely used for the investigation of fundamental cellular processes and disease mechanisms. Consequently, the lipid landscape of yeast has been extensively investigated and up to this day the lipidome is considered as rather basic. Here, we use...
2021-01-08 | MTBLS2119 | MetaboLights
Genome-metabolism interactions enable cell growth. To probe the extent of these interactions and delineate their functional contributions, we quantified the Saccharomyces amino acid metabolome and its response to systematic gene deletion. Over one-third of coding genes, in particular those important...
2017-03-02 | MTBLS434 | MetaboLights
Metabolic control analysis is being exploited in a systems biology study of the eukaryotic cell. Using chemostat culture, we have measured the impact of changes in flux (growth rate) on the transcriptome, proteome, endometabolome and exometabolome of the yeast Saccharomyces cerevisiae. Each function...
2012-04-19 | MTBLS8 | MetaboLights
Microorganisms naturally respond to changes in nutritional conditions by adjusting their morphology and physiology. The cellular response of the fission yeast S. pombe to nitrogen starvation has been extensively studied. Here, we report time course metabolomic analysis during one hour immediately af...
2013-11-26 | MTBLS67 | MetaboLights

Robust and efficient hosts are necessary to facilitate advances in biotechnology. We unveil Saccharomyces cerevisiae strain XP as a promising new microbial chassis owing to its high growth rate and robustness. This strain has a doubling time of 48.2 min, which is 12.8 min faster than the...

2024-09-26 | MTBLS7328 | MetaboLights

This study employs yeast as a model system to thoroughly investigate the differences in regulatory mechanisms under various nutrient limitation conditions, utilizing a systems biology approach integrated with techniques such as multi-omics analysis.To obtain a comprehensive quantitative landscap...

2026-05-24 | MTBLS14573 | MetaboLights
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