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Engineering of a modular and synthetic phosphoketolase pathway for photosynthetic production of acetone from CO2 in Synechococcus elongatus PCC 7942 under light and aerobic condition.

Plant Biotechnol J.. 2016-08; 
Chwa JW, Kim WJ, Sim SJ, Um Y, Woo HM.
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Gene Synthesis ... 2012; Okamura et al., 2010), Aspargillus nidulans xpkA (Panagiotou et al., 2008; Zhou et al., 2012) and Bacillus subtilis pta (Zhou et al., 2012) genes were codon-optimized using Gene Designer 2.0 software (DNA2.0; Menlo Park, CA) and synthesized (Genscript Inc., Piscataway ... Get A Quote

摘要

Capture and conversion of CO2 to valuable chemicals is intended to answer global challenges on environmental issues, climate change and energy security. Engineered cyanobacteria have been enabled to produce industry-relevant chemicals from CO2 . However, the final products from cyanobacteria have often been mixed with fermented metabolites during dark fermentation. In this study, our engineering of Synechococcus elongatus PCC 7942 enabled continuous conversion of CO2 to volatile acetone as sole product. This process occurred during lighted, aerobic culture via both ATP-driven malonyl-CoA synthesis pathway and heterologous phosphoketolase (PHK)-phosphotransacetylase (Pta) pathway. Because of strong correlations ... More

关键词

Synechococcus elongatus PCC 7942; acetone; biosolar cell factories; metabolic engineering