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Use of the λ Red-recombineering method for genetic engineering of Pantoea ananatis

机译:λRed重组方法在凤梨遗传工程中的应用

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Background Pantoea ananatis, a member of the Enterobacteriacea family, is a new and promising subject for biotechnological research. Over recent years, impressive progress in its application to L-glutamate production has been achieved. Nevertheless, genetic and biotechnological studies of Pantoea ananatis have been impeded because of the absence of genetic tools for rapid construction of direct mutations in this bacterium. The λ Red-recombineering technique previously developed in E. coli and used for gene inactivation in several other bacteria is a high-performance tool for rapid construction of precise genome modifications.Results In this study, the expression of λ Red genes in P. ananatis was found to be highly toxic. A screening was performed to select mutants of P. ananatis that were resistant to the toxic affects of λ Red. A mutant strain, SC17(0) was identified that grew well under conditions of simultaneous expression of λ gam, bet, and exo genes. Using this strain, procedures for fast introduction of multiple rearrangements to the Pantoea ananatis genome based on the λ Red-dependent integration of the PCR-generated DNA fragments with as short as 40 bp flanking homologies have been demonstrated.Conclusion The λ Red-recombineering technology was successfully used for rapid generation of chromosomal modifications in the specially selected P. ananatis recipient strain. The procedure of electro-transformation with chromosomal DNA has been developed for transfer of the marked mutation between different P. ananatis strains. Combination of these techniques with λ Int/Xis-dependent excision of selective markers significantly accelerates basic research and construction of producing strains.
机译:背景Pantoea ananatis是肠杆菌科的一员,是生物技术研究中一个崭新的有前途的学科。近年来,在其用于L-谷氨酸生产中的应用取得了令人瞩目的进展。然而,由于缺乏用于快速构建该细菌中直接突变的遗传工具,因此,对泛菌的遗传和生物技术研究受到了阻碍。先前在大肠杆菌中开发并用于其他几种细菌的基因失活的λRed重组技术是用于快速构建精确的基因组修饰的高性能工具。结果本研究中,λRed基因在P. ananatis中的表达被发现具有剧毒。进行筛选以选择对λRed的毒性作用具有抗性的菠萝假单胞菌的突变体。鉴定出突变菌株SC17(0)在λgam,bet和exo基因同时表达的条件下生长良好。使用该菌株,已经证明了基于PCR产生的DNA片段的λRed依赖性整合(短至40 bp侧向同源性)的快速重组方法,可以将泛菌快速导入到Pantoea ananatis基因组中。结论λRed重组技术被成功用于特制的P. ananatis受体菌株中染色体修饰的快速生成。已经开发了用染色体DNA进行电转化的方法,以在不同的P.ananastis菌株之间转移显着的突变。将这些技术与λInt / Xis依赖的选择性标记切除相结合,可大大加快基础研究和生产菌株的构建。

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