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Enhanced growth at low light intensity in the cyanobacterium Synechocystis PCC 6803 by overexpressing phosphoenolpyruvate carboxylase

机译:通过过度表达磷酸烯醇丙酮酸羧化酶提高蓝藻蓝藻PCC 6803在低光强度下的生长

摘要

Synechocystis PCC 6803 strains overexpressing pepc, gene encoding the carbon fixing enzyme phosphoenolpyr- uvate carboxylase (PEPc), were constructed and characterized for growth, PEPc protein content and in vitro PEPc activities. Synechocystis strains WT + Kmr ??? one (native) copy of pepc (control), WT + 2xPEPc ??? native copy of pepc and two additional native copies of pepc (in total three copies of pepc), and WT + PPM ??? native cop- ies of ppsa (encoding phosphoenolpyruvate synthase), pepc and mdh (encoding malate dehydrogenase) and one additional copy of each gene (in total two copies each of ppsa, pepc and mdh) were analyzed for growth under normal and low light intensities, and in darkness (no growth). No significant differences in the growth rates were observed when the cells were grown under normal light intensity. However, growth under low light inten- sity (3 ??mol photons??m??? 2??sec??? 1) resulted in increased growth rate, in particular in the strain with 3 copies of pepc. SDS-PAGE/Western immunoblots using antibodies directed against PEPc demonstrated an increased level of PEPc protein with increasing number of copies of pepc. This was followed by increased levels of in vitro PEPc activities. A less efficient ribulose 1,5-bisphosphate carboxylase/oxygenase in combination with reduced levels of NADPH and ATP under low light condition may make the relatively more efficient carbon fixing enzyme PEPc the limiting step for growth under this condition.
机译:构建了过表达pepc的集胞藻PCC 6803菌株,该菌株编码碳固定酶磷酸烯醇丙酮酸羧化酶(PEPc)的基因,并针对其生长,PEPc蛋白含量和体外PEPc活性进行了表征。蓝藻菌株WT + Kmr pepc(对照)一本(本机)副本,WT + 2xPEPc ??? pepc的本机副本和pepc的另外两个本机副本(总共pepc的三个副本),以及WT + PPM?在正常和弱光条件下分析了ppsa(编码磷酸烯醇丙酮酸合酶),pepc和mdh(编码苹果酸脱氢酶)的天然拷贝以及每个基因的一个额外拷贝(ppsa,pepc和mdh总共两个拷贝)。 ,并且在黑暗中(无增长)。当细胞在正常光强度下生长时,没有观察到生长速率的显着差异。但是,在低光照强度下(3 ?? mol光子?? m ??????????????????????????????????????????????????????????????????????????????????????? 1?1?)增长导致生长速率增加,特别是在具有3个pepc拷贝的菌株中。使用针对PEPc的抗体进行的SDS-PAGE / Western免疫印迹证明,随着pepc拷贝数的增加,PEPc蛋白的水平也随之增加。其次是增加体外PEPc活性水平。在弱光条件下效率较低的核糖1,5-二磷酸羧化酶/加氧酶与水平降低的NADPH和ATP结合可能会使相对高效的固碳酶PEPc成为该条件下生长的限制步骤。

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