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Metabolic engineering of Cupriavidus necator for heterotrophic and autotrophic alka(e)ne production.

Metab Eng.. 2016-09; 
Crépin L, Lombard E, Guillouet SE.
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Plasmid DNA Preparation ... 2.2. Plasmid and strain constructions. The genes (Synpcc7942_1593 and Synpcc7942_1594) from Syneccococus elongatus were codon-optimized for C. necator H16 and synthesized by GenScript (Piscataway, NJ, USA) and received in pUC57-Kan. ... Get A Quote

摘要

Alkanes of defined carbon chain lengths can serve as alternatives to petroleum-based fuels. Recently, microbial pathways of alkane biosynthesis have been identified and enabled the production of alkanes in non-native producing microorganisms using metabolic engineering strategies. The chemoautotrophic bacterium Cupriavidus necator has great potential for producing chemicals from CO2: it is known to have one of the highest growth rate among natural autotrophic bacteria and under nutrient imbalance it directs most of its carbon flux to the synthesis of the acetyl-CoA derived polymer, polyhydroxybutyrate (PHB), (up to 80% of intracellular content). Alkane synthesis pathway from Synechococcus elongatus (2 genes cod... More

关键词

Alkane; Alkene; Biofuels; Cupriavidus necator; Fermentation; Hydrocarbon; Metabolic engineering