生物
选择(遗传算法)
大肠杆菌
肠杆菌科
遗传学
沙门氏菌
否定选择
模块化设计
计算生物学
合成生物学
细菌
微生物学
基因
基因组
计算机科学
机器学习
操作系统
作者
Varnica Khetrapal,Kurosh S. Mehershahi,Shazmina Rafee,Siyi Chen,Chiew Ling Lim,Swaine L. Chen
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.
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