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Here, we selected Roseovarius nubinhibens as the model organism to comprehensively interrogate aromatic compound metabolism in marine Roseobacter clade. First, we preliminarily elucidated the three distinct mechanisms of aromatic compound transmembrane transport in R. nubinhibens. By integrating ...

2025-08-09 | MTBLS12306 | MetaboLights
Polycyclic aromatic hydrocarbons (PAHs), some of the most widespread organic contaminants, are highly toxic to soil microorganisms. Whether long-term polluted soils can still respond to the fresh input of pollutants is unknown. In this study, the soil enzyme activity, soil microbial community struct...
2021-02-17 | MTBLS1196 | MetaboLights
Widely reported discrepancies between metabolic flux and transcripts or enzyme levels in bacterial metabolism imply complex regulation mechanisms need to be considered, especially in new bacterial platforms for bioremediation and bioproduction. Comamonas testosteroni strains, which metabolize variou...
2022-11-21 | MTBLS3947 | MetaboLights

Understanding the formation mechanism of the flavor compounds in stinky tofu brine is crucial for controlling the flavor quality of Changsha stinky tofu. Dynamic changes in associated bacteria, enzymes, and differential metabolites in the metabolic pathway of aromatic amino acids in brine were in...

2026-03-20 | MTBLS2849 | MetaboLights

Due to marketing recommendations, white wines are often bottled in flint glass to improve aesthetics and showcase wine color. Although this practice is known to cause a wine fault, the influence of light on the fruity and flowery aromatic profile of wine is unknown. The aim of this study was to i...

2022-07-06 | MTBLS3201 | MetaboLights

GBM displays profound iron dependence and metabolic plasticity, yet how iron deprivation interfaces with stress-response pathways and amino acid metabolism in glioma remains incompletely understood. DFO, an iron chelator and hypoxia mimetic, is widely used experimentally, but the integration of a...

2026-08-20 | MTBLS15394 | MetaboLights
Data comparing protein expression during growth of Comamonas testosteroni Kf1 on succinate with growth on 3 aromatic substrates (vanillate, terephthalate, 4-hydroxybenzoate). Quantification by diDO-IPTL (Waldbauer et al. 2017 Analytical Chemistry).
ORGANISM(S): Comamonas Testosteroni Kf-1 (ncbitaxon:399795) 
2021-11-19 | MSV000088418 | MassIVE
The degradation of aromatic compounds comprises an important step in the removal of pollutants and re-utilization of plastics and other non-biological polymers. Here we set out to study Pseudomonas sp. strain phDV1, a gram-negative bacterium that was selected for its ability to degrade aromatic comp...
ORGANISM(S): Pseudomonas sp. phDV1 
2020-10-22 | PXD021237 | Pride
Lignin modifications and the exoproteome of three aromatic catabolic bacteria: Pseudomonas putida KT2440, Rhodoccocus jostii RHA1, and Amycolatopsis sp. ATCC 39116. Samples were digested with trypsin, then analyzed by LC-MS/MS. Data was searched with MSGF+ and abundances inferred using PNNL's DMS an...
ORGANISM(S): Pseudomonas Putida Kt2440 (ncbitaxon:160488) Amycolatopsis Sp. Atcc 39116 (ncbitaxon:385957) Rhodococcus Jostii Rha1 (ncbitaxon:101510) 
2019-11-01 | MSV000084524 | MassIVE
Degradation of polycyclic aromatic hydrocarbons (PAHs) such as naphthalene by anaerobic microorganisms is poorly understood. Strain NaphS2, an anaerobic sulfate reducing marine delta-proteobacterium is capable of using naphthalene and the aromatic compound benzoate, as well as pyruvate, as an elect...
ORGANISM(S): delta proteobacterium NaphS2 
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