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Anthropogenic organofluorine compounds are recalcitrant, globally distributed, and a human health concern. Although rare, natural processes synthesize fluorinated compounds, and some bacteria have evolved mechanisms to metabolize organofluorine compounds. Pseudomonas sp. strain 273 grows with...
2022-06-06 | MTBLS3893 | MetaboLights
The marine obligate hydrocarbonoclastic bacterium Thalassolituus oleivorans MIL-1 metabolises a broad range of aliphatic hydrocarbons almost exclusively as carbon and energy sources. We used LC-MS/MS shotgun proteomics to identify proteins involved in aerobic alkane degradation during growth on medi...
ORGANISM(S): Thalassolituus oleivorans MIL-1 
2019-01-14 | PXD011824 | Pride
In this study, we employed a multi-omics approach to study the ability of Aspergillus parasiticus MM36, an isolate derived from Tenebrio molitor intestines, to metabolize long-chain alkanes (lcAlk) and secrete enzymes able to modify polyethylene (PE). Following genome sequencing, assembly, and annot...
ORGANISM(S): Aspergillus parasiticus 
2025-05-13 | PXD058271 | Pride
Genomics
long-chain n-alkanes-degrading culture
Genomics
Bioremediation of soils contaminated by long-chain alkanes
Genomics
Studies on the biodegradation of long-Chain alkanes
Multi-omics insights into the response of Aspergillus parasiticus to long-chain alkanes in relation to polyethylene modification
Genomics
Studies on the biodegradation of long-Chain alkanes and polyethylene
In this study, we employed a multi-omics approach to study the ability of Aspergillus parasiticus MM36, an isolate derived from Tenebrio molitor intestines, to metabolize long-chain alkanes (lcAlk) and secrete enzymes able to modify polyethylene (PE). Following genome sequencing, assembly, and annot...
ORGANISM(S): Aspergillus parasiticus 
2025-05-13 | GSE282836 | GEO
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