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Engineering of Quasi-Natural Pseudomonas putida Strains for Toluene Metabolism through an ortho-Cleavage Degradation Pathway

机译:通过邻位裂解降解途径工程拟天然恶臭假单胞菌菌株的甲苯代谢

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摘要

To construct a bacterial catalyst for bioconversion of toluene and several alkyl and chloro- and nitro-substituted derivatives into the corresponding benzoates, the upper TOL operon of plasmid pWW0 of Pseudomonas putida was fully reassembled as a single gene cassette along with its cognate regulatory gene, xylR. The corresponding DNA segment was then targeted to the chromosome of a P. putida strain by using a genetic technique that allows deletion of all recombinant tags inherited from previous cloning steps and leaves the otherwise natural strain bearing exclusively the DNA segment encoding the phenotype of interest. The resulting strains grew on toluene as the only carbon source through a two-step process: conversion of toluene into benzoate, mediated by the upper TOL enzymes, and further metabolism of benzoate through the housekeeping ortho-ring cleavage pathway of the catechol intermediate.
机译:为了构建将甲苯以及几种烷基,氯和硝基取代的衍生物生物转化为相应的苯甲酸酯的细菌催化剂,恶臭假单胞菌质粒pWW0的上部TOL操纵子与相关调控基因一起完全重组为单基因盒, xylR。然后,通过使用遗传技术将相应的DNA片段靶向恶臭假单胞菌菌株的染色体,该技术允许删除从先前克隆步骤继承的所有重组标签,而使其他天然菌株仅带有编码目标表型的DNA片段。产生的菌株通过两步过程在甲苯上作为唯一的碳源生长:由上层TOL酶介导的甲苯转化为苯甲酸酯的转化,以及通过邻苯二酚中间体的管家邻环裂解途径进一步苯甲酸酯的代谢。

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