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Polyhydroxybutyrate Production from Carbon Dioxide by Cyanobacteria

机译:蓝细菌从二氧化碳生产多羟基丁酸酯

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Genetic characterization and enhancement of polyhydroxybutyrate (PHB) accumulation in cyanobacteria were investigated for efficient PHB production from CO_2. The genome DNAs in the PHB-accumulating strains Synechococcus sp. MA19 and Spirulina platensis NIES46 retained the highly homologous region to phaC of Synechocystis PCC6803, whereas low homol-ogy was detected in the nonaccumulating strains Synechococcus sp. PCC7942 and Anabaena cylindrica NIES19. Synechococcus sp. MA19, which accumulates PHB up to 30% of dry cell weight from CO_2 as the sole carbon source, was mutated by insertion of transposon Tn5 to enhance the PHB accumulation. Genetic and physiological analysis of the mutant indicated that decreased phosphotransacetylase activity could trigger an increase of acetyl coenzyme A leading to enhancement of PHB accumulation. PHB synthase in Synechococcus sp. MA19 was probably attached to thylakoid membrane since PHB granules were associated with pigments. A genetically engineered cyanobacteria retaining soluble PHB synthase from Ralstonia eutropha accumulated pigment-free PHB granules, which is an advantage for the purification of PHB.
机译:为了有效地从CO_2生产PHB,研究了蓝藻中多羟基丁酸酯(PHB)积累的遗传特征和增强。 PHB积累菌株Synechococcus sp。的基因组DNA。 MA19和螺旋藻NIES46保留了与集胞藻PCC6803的phaC高度同源的区域,而在非蓄积菌株Synechococcus sp。中检测到了低同源性。 PCC7942和鱼腥藻NIES19。粘球菌通过插入转座子Tn5突变了MA19,使它从CO_2积累高达30%的干细胞重量的PHB作为唯一碳源,从而使其突变,从而增强了PHB的积累。对该突变体的遗传和生理分析表明,磷酸转乙酰酶活性的降低可能会触发乙酰辅酶A的增加,从而导致PHB积累的增加。 Synechococcus sp。中的PHB合酶。由于PHB颗粒与色素有关,因此MA19可能附着在类囊体膜上。从富营养小球藻(Ralstonia eutropha)保留可溶性PHB合酶的基因工程蓝细菌中积累了无色素的PHB颗粒,这对于纯化PHB是一个优势。

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