首页> 外文期刊>Journal of Environmental Science and Health. A, Toxic/Hazardous Substances & Environmental Engineering >Expression Of A Fused Fpg Gene In E. Coli And Engineering A Strain Comamonas Testosteroni Zd4-1-fpg For Environmentalapplication
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Expression Of A Fused Fpg Gene In E. Coli And Engineering A Strain Comamonas Testosteroni Zd4-1-fpg For Environmentalapplication

机译:融合的Fpg基因在大肠杆菌中的表达及工程化改造菌株Comamonas Testosteroni Zd4-1-fpg在环境中的应用

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摘要

A fused fpg gene composed of phe B and gfp gene, which encoded catechol 2,3-dioxygenase (C23O) and green fluorescence protein (GFP), respectively, was expressed in E. coli to investigate its functional intactness. The expression results showed that C23O activity was detected in the induced bacterial cells and the E. coli cells containing the fusion protein emitted green fluorescence under epifluorescence microscopy, indicating that the fused fpg gene expressed correctly in E. coli. After expressed in E. coli, the fpg gene was transferred into the chromosome of a wild-type strain Comamonas testosteroni ZD4-1 by a pUT mini-Tn5 type vector pUT-Hg-fpg. The constructed genetically engineered bacterium strain C testosteroni ZD4-1-fpg was also able to emit green fluorescence under epifluorescence microscopy. The stability assay showed that fpg gene could be detected in the host strain after 10 times of transfer inoculation, indicating the fpg gene is very stable. These results revealed that the Comamona testosteroni ZD4-1-fpg maybe used as not only an aromatic compound-biodegrading strain but also as an indicator strain to monitor the fate of the bacterial strains in the bioremediation.
机译:在大肠杆菌中表达了由phe B和gfp基因组成的融合fpg基因,分别编码儿茶酚2,3-二加氧酶(C23O)和绿色荧光蛋白(GFP),以研究其功能完整性。表达结果表明,在诱导的细菌细胞中检测到C23O活性,并且含有融合蛋白的大肠杆菌细胞在落射荧光显微镜下发出绿色荧光,表明融合的fpg基因在大肠杆菌中正确表达。在大肠杆菌中表达后,通过pUT mini-Tn5型载体pUT-Hg-fpg将fpg基因转移到野生型睾丸Comamonas testosteroni ZD4-1的染色体中。所构建的基因工程细菌菌株C睾丸激素ZD4-1-fpg也能够在落射荧光显微镜下发射绿色荧光。稳定性试验表明,在接种10次后可以在宿主菌株中检测到fpg基因,表明fpg基因非常稳定。这些结果表明,Comamona testosteroni ZD4-1-fpg不仅可以用作芳香族化合物的生物降解菌株,而且还可以作为指示菌株,以监测生物修复过程中细菌菌株的命运。

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