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A set of powerful negative selection systems for unmodified Enterobacteriaceae

机译:一套强大的未修饰肠杆菌科细菌的阴性选择系统

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摘要

Creation of defined genetic mutations is a powerful method for dissecting mechanisms of bacterial disease; however, many genetic tools are only developed for laboratory strains. We have designed a modular and general negative selection strategy based on inducible toxins that provides high selection stringency in clinical Escherichia coli and Salmonella isolates. No strain- or species-specific optimization is needed, yet this system achieves better selection stringency than all previously reported negative selection systems usable in unmodified E. coli strains. The high stringency enables use of negative instead of positive selection in phage-mediated generalized transduction and also allows transfer of alleles between arbitrary strains of E. coli without requiring phage. The modular design should also allow further extension to other bacteria. This negative selection system thus overcomes disadvantages of existing systems, enabling definitive genetic experiments in both lab and clinical isolates of E. coli and other Enterobacteriaceae.
机译:建立明确的基因突变是剖析细菌疾病机制的有力方法。但是,许多遗传工具仅针对实验室菌株而开发。我们已经设计了一种基于可诱导毒素的模块化通用负选择策略,该策略可在临床大肠杆菌和沙门氏菌分离株中提供较高的选择严格性。不需要菌株或物种的特定优化,但是该系统比以前报道的可用于未经修饰的大肠杆菌菌株的所有阴性选择系统都具有更好的选择严格性。高严格性使得可以在噬菌体介导的广义转导中使用阴性选择而不是阳性选择,并且还允许等位基因在任意菌株之间转移而不需要噬菌体。模块化设计还应允许进一步扩展到其他细菌。因此,这种阴性选择系统克服了现有系统的缺点,可以在大肠杆菌和其他肠杆菌科的实验室和临床分离株中进行确定的遗传实验。

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