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余利红, 郭厚良, 徐旭东. 表达lac和glk基因的蓝藻的异养生长[J]. 水生生物学报, 2002, 26(4): 363-369.
引用本文: 余利红, 郭厚良, 徐旭东. 表达lac和glk基因的蓝藻的异养生长[J]. 水生生物学报, 2002, 26(4): 363-369.
YU Li-hong, GUO Hou-liang, XU Xu-dong. HETEROTROPHIC GROWTH OF CYANOBACTERIA EXPRESSING LAC AND GLK GENES[J]. ACTA HYDROBIOLOGICA SINICA, 2002, 26(4): 363-369.
Citation: YU Li-hong, GUO Hou-liang, XU Xu-dong. HETEROTROPHIC GROWTH OF CYANOBACTERIA EXPRESSING LAC AND GLK GENES[J]. ACTA HYDROBIOLOGICA SINICA, 2002, 26(4): 363-369.

表达lac和glk基因的蓝藻的异养生长

HETEROTROPHIC GROWTH OF CYANOBACTERIA EXPRESSING LAC AND GLK GENES

  • 摘要: 将来自 Brucella abortus 的葡萄糖激酶基因 glk 和大肠杆菌乳糖操纵子基因 lacZYA 装置于蓝藻 glnA 启动子下游,以广宿主质粒导入3种蓝藻.基因的表达通过β-半乳糖苷酶和葡糖激酶活性测定得到确证.基因工程藻株均获得了利用乳糖异养生长的能力.集胞藻6803转基因株可在光照加 DCMU 的条件下利用乳糖生长,而鱼腥藻转基因株依赖乳糖可在完全黑暗条件下生长,并可在黑暗或加 DCMU 条件下诱导产生异形胞.

     

    Abstract: The glucose kinase gene glk from Brucella abortus and lacZYA genes from E. coli were positioned downstream of a cyanobacterial glnA promoter, and introduced into three cyanobacterial species in a broad-host-range plasmid. Expression of the exogenous genes was confirmed by assay of β-galactosidase and glucokinase activity. The genetically-engineered cyanobacterial strains acquired capability of heterotrophic growth on lactose. Synechocystis sp. PCC 6803(pRL2224)can grow on lactose in the light with DCMU, while Anabaena strains harboring pRL2224 are capable of heterotrophic growth in complete darkness and produce heterocysts upon induction in darkness or in the light with DCMU.

     

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