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Rerouting Carbon Flux To Enhance Photosynthetic Productivity

机译:重新路由碳通量以提高光合生产力

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The bioindustrial production of fuels, chemicals, and therapeutics typically relies upon carbohydrate inputs derived from agricultural plants, resulting in the entanglement of food and chemical commodity markets. We demonstrate the efficient production of sucrose from a cyanobacterial species, Synechococcus elongatus , heterologously expressing a symporter of protons and sucrose ( cscB ). cscB -expressing cyanobacteria export sucrose irreversibly to concentrations of >10 mM without culture toxicity. Moreover, sucrose-exporting cyanobacteria exhibit increased biomass production rates relative to wild-type strains, accompanied by enhanced photosystem II activity, carbon fixation, and chlorophyll content. The genetic modification of sucrose biosynthesis pathways to minimize competing glucose- or sucrose-consuming reactions can further improve sucrose production, allowing the export of sucrose at rates of up to 36.1 mg liter~(?1) h illumination~(?1). This rate of production exceeds that of previous reports of targeted, photobiological production from microbes. Engineered S. elongatus produces sucrose in sufficient quantities (up to ~80% of total biomass) such that it may be a viable alternative to sugar synthesis from terrestrial plants, including sugarcane.
机译:燃料,化学药品和治疗剂的生物工业生产通常依赖于农业植物的碳水化合物输入,从而导致食品和化学商品市场的纠缠。我们证明了从蓝细菌物种,Synchococcus伸长,异源表达质子和蔗糖(cscB)的转运蛋白的蔗糖的有效生产。表达cscB的蓝细菌不可逆地输出蔗糖至浓度> 10 mM,而没有培养毒性。此外,相对于野生型菌株,出口蔗糖的蓝细菌显示出更高的生物量生产速率,并伴随着增强的光系统II活性,碳固定和叶绿素含量。蔗糖生物合成途径的遗传修饰可以最大程度地减少竞争性的消耗葡萄糖或消耗蔗糖的反应,从而可以进一步提高蔗糖的产量,使蔗糖的出口量最高可达36.1 mg升〜(?1)h照明〜(?1)。这种生产率超过了以前针对微生物进行有针对性的光生物学生产的报道。工程化的S. elongatus生产出足够量的蔗糖(最多占总生物量的80%),因此它可能是陆地植物(包括甘蔗)合成糖的可行替代品。

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