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The impact of ammonia on anaerobic digestion performance and microbial dynamics has been extensively studied, but the concurrent effect of anions brought by ammonium salt should not be neglected. This paper studied this effect using metabolomics and a time-course statistical framework. Metabolomi...

2024-03-01 | MTBLS7859 | MetaboLights

Across diverse contexts, bacteria experience loss of electron acceptors due to fluctuating environmental conditions, requiring strategies to avoid metabolic arrest due to reductive stress. Yet, microbial metabolism has been primarily studied with cells growing aerobically under nutrient replete c...

2026-06-03 | MTBLS13293 | 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
Here, we report significant changes in the composition of the lung microbiome and metabolome of mice under immune suppression, infection of immunosuppressed mice with virulent and avirulent strains of the clinically important human-pathogenic fungus Aspergillus fumigatus, and treatment with the clin...
2025-07-04 | MTBLS12262 | MetaboLights

Bacteria can resist antibiotics and toxic substances within demanding ecological settings, such as low oxygen, extreme acid, and during nutrient starvation. MdtEF, a proton motive force-driven efflux pump from the resistance-nodulation-cell division (RND) superfamily, is upregulated in these cond...

2025-09-26 | MTBLS13050 | MetaboLights
Anaerobic benzene oxidation coupled to the reduction of Fe(III) was studied in Ferroglobus placidus in order to learn more about how such a stable molecule could be metabolized under strict anaerobic conditions. F. placidus conserved energy to support growth at 85°C in a medium with benzene provide...
ORGANISM(S): Ferroglobus placidus DSM 10642 
Anaerobic benzene oxidation coupled to the reduction of Fe(III) was studied in Ferroglobus placidus in order to learn more about how such a stable molecule could be metabolized under strict anaerobic conditions. F. placidus conserved energy to support growth at 85°C in a medium with benzene provide...
ORGANISM(S): Ferroglobus placidus DSM 10642 
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