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Engineering Synechococcus elongatus PCC 7942 for Continuous Growth under Diurnal Conditions

机译:工程Synechococcus elongatus PCC 7942用于日间条件下的连续生长

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Synechococcus elongatus strain PCC 7942 strictly depends upon the generation of photosynthetically derived energy for growth and is incapable of biomass increase in the absence of light energy. Obligate phototrophs' core metabolism is very similar to that of heterotrophic counterparts exhibiting diverse trophic behavior. Most characterized cyanobacterial species are obligate photoautotrophs under examined conditions. Here we determine that sugar transporter systems are the necessary genetic factors in order for a model cyanobacterium, Synechococcus elongatus PCC 7942, to grow continuously under diurnal (light/dark) conditions using saccharides such as glucose, xylose, and sucrose. While the universal causes of obligate photoautotrophy may be diverse, installing sugar transporters provides new insight into the mode of obligate photoautotrophy for cyanobacteria. Moreover, cyanobacterial chemical production has gained increased attention. However, this obligate phototroph is incapable of product formation in the absence of light. Thus, converting an obligate photoautotroph to a heterotroph is desirable for more efficient, economical, and controllable production systems.
机译:细长突触球菌PCC 7942严格依赖光合作用产生的能量来生长,并且在没有光能的情况下无法增加生物量。专性光养生物的核心代谢与表现出不同营养行为的异养营养生物非常相似。在检查条件下,最具特征的蓝细菌物种是专性光自养生物。在这里,我们确定糖转运蛋白系统是必需的遗传因素,以使模型蓝藻,细长突触球菌PCC 7942在昼夜(亮/暗)条件下使用糖类(例如葡萄糖,木糖和蔗糖)连续生长。虽然专性光致自养的普遍原因可能多种多样,但安装糖转运蛋白可为蓝细菌专性光致自养的模式提供新的见解。此外,蓝细菌化学产品的生产受到了越来越多的关注。但是,这种专性光养分在没有光的情况下不能形成产物。因此,将更专一的自养生物转化为异养生物对于更有效,经济和可控制的生产系统是理想的。

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