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Microbes that can recycle one-carbon (C1) greenhouse gases into fuels and chemicals are vital for the biosustainability of future industries. Acetogens are the most efficient known microbes for fixing carbon oxides CO2 and CO. Understanding proteome allocation is important for metabolic engineering ...
ORGANISM(S): Clostridium autoethanogenum 
2022-05-22 | PXD025732 | Pride
Living biological systems display a fascinating ability to self-organise their metabolism. This ability ultimately determines metabolic robustness that is fundamental to control cellular behaviour. However, fluctuations in metabolism can affect cellular homeostasis through transient oscillations. Fo...
ORGANISM(S): Clostridium autoethanogenum 
2020-05-18 | PXD016381 | Pride
Gas-fermenting acetogens, such as Clostridium autoethanogenum, have emerged as promising biocatalysts capable of converting CO and CO2-containing gases into fuels and chemicals relevant for a circular economy. However, functionalities of the majority of genes in acetogens remain uncharacterised, hin...
ORGANISM(S): Clostridium autoethanogenum 
2025-08-12 | PXD062027 | Pride
Bioinformatics assembly,analysis and annotation of Acetogen bacteria Tepidanaerobacter acetatoxydans strain Re1.
Microbes able to convert gaseous one-carbon (C1) waste feedstocks are increasingly important to transition to the sustainable production of renewable chemicals and fuels. Acetogens are interesting biocatalysts since gas fermentation using Clostridium autoethanogenum has been commercialised. However,...
ORGANISM(S): Clostridium autoethanogenum 
2024-06-12 | GSE225123 | GEO
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