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Multigene Editing in the Escherichia coli Genome via the CRISPR-Cas9 System

Applied and Environmental Microbiology · 2015 · Vol. 81(7) · pp. 2506–2514
Yu JiangBiao ChenChunlan DuanBingbing SunJunjie YangSheng Yang

Abstract

An efficient genome-scale editing tool is required for construction of industrially useful microbes. We describe a targeted, continual multigene editing strategy that was applied to the Escherichia coli genome by using the Streptococcus pyogenes type II CRISPR-Cas9 system to realize a variety of precise genome modifications, including gene deletion and insertion, with a highest efficiency of 100%, which was able to achieve simultaneous multigene editing of up to three targets. The system also demonstrated successful targeted chromosomal deletions in Tatumella citrea, another species of the Enterobacteriaceae, with highest efficiency of 100%.

CRISPR and Genetic EngineeringRNA and protein synthesis mechanismsBacterial Genetics and BiotechnologyGenome editingCRISPRBiologyCas9GenomeEscherichia coliGeneticsGeneComputational biologyGenome engineering

MeSH terms

EnterobacteriaceaeGenes, BacterialGenetics, MicrobialMolecular BiologyRecombination, GeneticStreptococcus pyogenesGenome, BacterialCRISPR-Cas Systems
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1,351
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32.09
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55
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