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Construction and Characterization of Two Recombinant Bacteria That Grow on ortho- and para-Substituted Chlorobiphenyls

机译:在邻位和对位取代的氯联苯上生长的两种重组细菌的构建和表征

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摘要

Cloning and expression of the aromatic ring dehalogenation genes in biphenyl-growing, polychlorinated biphenyl (PCB)-cometabolizing Comamonas testosteroni VP44 resulted in recombinant pathways allowing growth on ortho- and para-chlorobiphenyls (CBs) as a sole carbon source. The recombinant variants were constructed by transformation of strain VP44 with plasmids carrying specific genes for dehalogenation of chlorobenzoates (CBAs). Plasmid pE43 carries the Pseudomonas aeruginosa 142 ohb genes coding for the terminal oxygenase (ISPOHB) of the ortho-halobenzoate 1,2-dioxygenase, whereas plasmid pPC3 contains the Arthrobacter globiformis KZT1 fcb genes, which catalyze the hydrolytic para-dechlorination of 4-CBA. The parental strain, VP44, grew only on low concentrations of 2- and 4-CB by using the products from the fission of the nonchlorinated ring of the CBs (pentadiene) and accumulated stoichiometric amounts of the corresponding CBAs. The recombinant strains VP44(pPC3) and VP44(pE43) grew on, and completely dechlorinated high concentrations (up to 10 mM), of 4-CBA and 4-CB and 2-CBA and 2-CB, respectively. Cell protein yield corresponded to complete oxidation of both biphenyl rings, thus confirming mineralization of the CBs. Hence, the use of CBA dehalogenase genes appears to be an effective strategy for construction of organisms that will grow on at least some congeners important for remediation of PCBs.
机译:在联苯生长,多氯联苯(PCB)代谢的Comamonas testosteroni VP44中,芳香环脱卤基因的克隆和表达产生了重组途径,允许在邻氯联苯和对氯联苯(CBs)上作为唯一碳源生长。通过用携带用于氯苯甲酸酯(CBA)脱卤的特定基因的质粒转化VP44菌株来构建重组变体。质粒pE43携带铜绿假单胞菌142 ohb基因,该基因编码邻卤代苯甲酸酯1,2-二加氧酶的末端加氧酶(ISPOHB),而质粒pPC3包含球形节杆菌KZT1 fcb基因,该基因催化4-CBA的水解副脱氯反应。通过使用CB的非氯化环(戊二烯)裂变产生的产物和相应CBA的化学计量累积量,亲本菌株VP44仅在低浓度的2-CB和4-CB上生长。重组菌株VP44(pPC3)和VP44(pE43)分别在4-CBA和4-CB和2-CBA和2-CB上生长并完全脱氯(高至10 mM)。细胞蛋白产量对应于两个联苯环的完全氧化,因此确认了CB的矿化。因此,使用CBA脱卤酶基因似乎是构建生物的有效策略,该生物将在至少对PCB修复具有重要意义的同类物中生长。

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