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Systems-level engineering and characterisation of Clostridium autoethanogenum through heterologous production of poly-3-hydroxybutyrate (PHB).

Metab. Eng.. 2019; 
de Souza Pinto LemgruberRenato,ValgepeaKaspar,TappelRyan,BehrendorffJames B,PalfreymanRobin William,PlanManuel,HodsonMark P,SimpsonSéan Dennis,NielsenLars K,K?pkeMichael,MarcellinEst
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Gene Synthesis 1) were codon-optimized using an in-house algorithm, and synthesized as a single tricistronic operon with ribosome binding sites preceding each gene (GenScript, Piscataway, NJ). Get A Quote

摘要

Gas fermentation is emerging as an economically attractive option for the sustainable production of fuels and chemicals from gaseous waste feedstocks. Clostridium autoethanogenum can use CO and/or CO + H as its sole carbon and energy sources. Fermentation of C. autoethanogenum is currently being deployed on a commercial scale for ethanol production. Expanding the product spectrum of acetogens will enhance the economics of gas fermentation. To achieve efficient heterologous product synthesis, limitations in redox and energy metabolism must be overcome. Here, we engineered and characterised at a systems-level, a recombinant poly-3-hydroxybutyrate (PHB)-producing strain of C. autoethanogenum. Cells were grow... More

关键词

Acetogens,C. autoethanogenum,Gas fermentation,PHB,Polyhydroxyalkanoate,Wood-Ljungdahl pat