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Unknown
(19)
Genomics
(15)
Proteomics
(2)
Metabolomics
(1)
Organisms
Homo sapiens
(15)
Repository
EGA
(15)
MassIVE
(2)
MetaboLights
(1)
Technology Type
Illumina 15K
(8)
Mass spectrometry
(1)
Instrument Platform
MaXis
(1)
Orbitrap Fusion
(1)
Liquid Chromatography MS - alternating - hilic
(1)
Publication Date
2018
(2)
2021
(1)
CHEBI ID
CHEBI:26562
(1)
CHEBI:176811
(1)
CHEBI:27082
(1)
CHEBI:139272
(1)
CHEBI:157780
(1)
CHEBI:25351
(1)
CHEBI:28315
(1)
CHEBI:17665
(1)
CHEBI:30813
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CHEBI:33283
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CHEBI:17485
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CHEBI:33942
(1)
CHEBI:18009
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CHEBI:73061
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CHEBI:18307
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CHEBI:88003
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CHEBI:30805
(1)
CHEBI:18066
(1)
CHEBI:35704
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CHEBI:15682
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CHEBI:17553
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CHEBI:89640
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CHEBI:59783
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CHEBI:25048
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CHEBI:16264
(1)
CHEBI:17822
(1)
CHEBI:15721
(1)
CHEBI:15414
(1)
CHEBI:16680
(1)
CHEBI:26271
(1)
Metabolite Name
SuccinylGSH
(1)
SuccinylCys
(1)
Methyl-lysine (N)
(1)
Isocapric Acid
(1)
Dodecanoic acid/Lauric acid
(1)
Beta-hydroxyvaleric Acid
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Beta Alanine
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Aminoadipate
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Acetyl-cysteine
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Acetyl-aspartate (N)
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5-Oxoproline (pyroglutamic acid)
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2-hydroxy glutarate
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2-Hydroxyisocaproic Acid
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Myristoyl-carnitine
(1)
Dihydroxyacetone phosphate (DHAP)
(1)
Uridine diphosphate galactose
(1)
Ribose phosphate
(1)
Palmitoyl-carnitine
(1)
IsoLeucine
(1)
G6P
(1)
Argininosuccinate
(1)
AKG
(1)
Acetyl-lysine
(1)
Acetyl-glutamine
(1)
Acetyl-carnitine
(1)
Ethanolamine phosphate
(1)
Mevalonate
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Oxoadipate
(1)
Homocystine
(1)
Propionyl-carnitine
(1)
Release Date
2022
(3)
2020
(3)
2015
(3)
2021
(2)
2016
(2)
2024
(1)
2023
(1)
2018
(1)
2017
(1)
2014
(1)
2013
(1)
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Culture Volume Influences the Dynamics of Adaptation under Long-Term Stationary Phase.
Not available
S-EPMC7719224
|
biostudies-literature
Cite
Elevated mutagenesis does not explain the increased frequency of antibiotic resistant mutants in starved aging colonies.
Not available
S-EPMC3828146
|
biostudies-literature
Cite
Alarmingly High Segregation Frequencies of Quinolone Resistance Alleles within Human and Animal Microbiomes Are Not Explained by Direct Clinical Antibiotic Exposure.
Not available
S-EPMC4494058
|
biostudies-literature
Cite
The Somatic Nature of Cancer Allows It to Affect Highly Constrained Genes.
Not available
S-EPMC4898816
|
biostudies-literature
Cite
Gene Loss Dominates As a Source of Genetic Variation within Clonal Pathogenic Bacterial Species.
Not available
S-EPMC4558853
|
biostudies-literature
Cite
Adaptations Accumulated under Prolonged Resource Exhaustion Are Highly Transient.
Not available
S-EPMC7426164
|
biostudies-literature
Cite
Rapid Adaptation Often Occurs through Mutations to the Most Highly Conserved Positions of the RNA Polymerase Core Enzyme.
Not available
S-EPMC9459352
|
biostudies-literature
Cite
Bacterial intra-species gene loss occurs in a largely clocklike manner mostly within a pool of less conserved and constrained genes.
Not available
S-EPMC5062063
|
biostudies-literature
Cite
Rapid Genetic Adaptation during the First Four Months of Survival under Resource Exhaustion.
Not available
S-EPMC5455981
|
biostudies-literature
Cite
Pseudomonas putida Dynamics of Adaptation under Prolonged Resource Exhaustion.
Not available
S-EPMC11179108
|
biostudies-literature
Cite
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