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首页> 外文期刊>Frontiers in Plant Science >Heterologous Expression of Ethanol Synthesis Pathway in Glycogen Deficient Synechococcus elongatus PCC 7942 Resulted in Enhanced Production of Ethanol and Exopolysaccharides
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Heterologous Expression of Ethanol Synthesis Pathway in Glycogen Deficient Synechococcus elongatus PCC 7942 Resulted in Enhanced Production of Ethanol and Exopolysaccharides

机译:乙醇合成途径在糖原缺陷中的异源表达<斜斜度>同系Cocccus elongatus PCC 7942导致乙醇和脱冬糖的产生增强

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In this study, the Synechococcus elongatus PCC 7942 (hereafter S. elongatus ) was engineered by the glgC knockout as well as the insertion of the pdc - adh genes from two different microorganisms. The insertion of pdc - adh genes increased the ethanol synthesis with further improvement in the productivity upon the destruction of glycogen synthesis pathway and the supplementation of cofactor. The abolition of glycogen synthesis pathway led to a considerable increase of the engineered S. elongatus metabolites involved in the ethanol synthesis pathway. Moreover, the studies on cofactor addition highlighted the importance of Mg ~(+2), Zn ~(+2), thiamine pyrophosphate, and NADP ~(+) in ethanol synthesis. The yields of 3856 mg/L ethanol and 109.5 μg/10 ~(8) cells exopolysaccharides were obtained in the engineered S. elongatus using a photo-bioreactor under optimized conditions. This enhanced production in ethanol and exopolysaccharides are attributed to the flux of carbon from glycogen synthesis pathway and proper availability of essential components.
机译:在该研究中,通过GLGC敲除设计了SneCeChocccus elongatus PCC 7942(下面的S. Elongatus)以及从两种不同的微生物中插入PDC-ADH基因。 PDC - ADH基因的插入增加了乙醇合成,进一步改善了糖原合成途径破坏时的生产率和辅助因子的补充。糖原合成途径的废除导致乙醇合成途径中的工程化S. elongatus代谢产物的相当大增加。此外,辅助因子的研究强调了乙醇合成中Mg〜(+2),Zn〜(+2),硫胺磷酸酯和NADP〜(+)的重要性。在优化条件下,在工程化的S.Elongatus中获得3856mg / L乙醇和109.5μg/ 10〜(8)细胞脱果的产率。这种增强的乙醇和潜水糖的产量归因于来自糖原合成途径的碳的助焊剂和必需组分的适当可用性。

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