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Global metabolic rewiring for improved CO2 fixation and chemical production in cyanobacteria

机译:全球代谢重新布线,以改善蓝细菌中的CO 2 固定和化学生产

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摘要

Cyanobacteria have attracted much attention as hosts to recycle CO2 into valuable chemicals. Although cyanobacteria have been engineered to produce various compounds, production efficiencies are too low for commercialization. Here we engineer the carbon metabolism of Synechococcus elongatus PCC 7942 to improve glucose utilization, enhance CO2 fixation and increase chemical production. We introduce modifications in glycolytic pathways and the Calvin Benson cycle to increase carbon flux and redirect it towards carbon fixation. The engineered strain efficiently uses both CO2 and glucose, and produces 12.6?g?l?1 of 2,3-butanediol with a rate of 1.1?g?l?1?d?1 under continuous light conditions. Removal of native regulation enables carbon fixation and 2,3-butanediol production in the absence of light. This represents a significant step towards industrial viability and an excellent example of carbon metabolism plasticity.
机译:蓝细菌作为宿主将CO 2 循环利用为有价值的化学物质已引起了广泛的关注。尽管已经设计了蓝细菌来生产各种化合物,但是生产效率对于商业化而言仍然太低。在这里,我们设计了细长突触球菌PCC 7942的碳代谢,以提高葡萄糖利用率,增强CO 2 固定并增加化学产量。我们在糖酵解途径和Calvin Benson循环中引入修饰,以增加碳通量并将其重定向至碳固定。该工程菌株有效地利用了CO 2 和葡萄糖,并产生了12.6?g?l ?1 的2,3-丁二醇,其比率为1.1?g?l < sup>?1 ?d ?1 在连续光照条件下。去除天然调节可以在无光的情况下实现碳固定和2,3-丁二醇的生产。这代表了朝着工业活力迈出的重要一步,也是碳代谢可塑性的一个极好的例子。

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