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经两步同源重组工程改造的杂种假单胞菌获得了对芳烃和多氯联苯的新的降解能力。

Hybrid pseudomonads engineered by two-step homologous recombination acquire novel degradation abilities toward aromatics and polychlorinated biphenyls.

机构信息

Bioproduction Research Institute, National Institute of Advanced Industrial Science and Technology, Tsukuba 305-8566, Japan.

出版信息

Appl Microbiol Biotechnol. 2010 Oct;88(4):915-23. doi: 10.1007/s00253-010-2840-8. Epub 2010 Aug 31.

Abstract

Pseudomonas pseudoalcaligenes KF707 possesses a chromosomally encoded bph gene cluster responsible for the catabolism of biphenyl and polychlorinated biphenyls. Previously, we constructed chimeric versions of the bphA1 gene, which encodes a large subunit of biphenyl dioxygenase, by using DNA shuffling between bphA1 genes from P. pseudoalcaligenes KF707 and Burkholderia xenovorans LB400. In this study, we demonstrate replacement of the bphA1 gene with chimeric bphA1 sequence within the chromosomal bph gene cluster by two-step homologous recombination. Notably, some of the hybrid strains acquired enhanced and/or expanded degradation capabilities for specific aromatic compounds, including single aromatic hydrocarbons and polychlorinated biphenyls.

摘要

铜绿假单胞菌 KF707 拥有一个位于染色体上的 bph 基因簇,负责双苯和多氯联苯的代谢。先前,我们通过铜绿假单胞菌 KF707 和恶臭假单胞菌 LB400 的 bphA1 基因之间的 DNA 改组,构建了双苯加氧酶大亚基 bphA1 基因的嵌合版本。在这项研究中,我们通过两步同源重组证明了在染色体 bph 基因簇内用嵌合 bphA1 序列替换 bphA1 基因。值得注意的是,一些杂种菌株获得了增强和/或扩展了对特定芳香族化合物,包括单芳烃和多氯联苯的降解能力。

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