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Selection-dependent and Independent Generation of CRISPR/Cas9-mediated Gene Knockouts in Mammalian Cells
Published on: June 16, 2017
A Dual-Plasmid CRISPR/Cas9-Based Genome Editing System for Efficient Gene Knockout and Large DNA Integration in
Shuwei Yan1, Jing Zhang2, Yufei Han2,3
1Department of Laboratory, Xi'an No.3 Hospital, the Affiliated Hospital of Northwest University, Xi'an 710018, China.
Abstract:
Species of Cronobacter are emerging foodborne pathogens that pose a significant threat to neonates. Functional genomic studies in Cronobacter have been hindered by the lack of efficient genetic manipulation tools. Here, we established a CRISPR/Cas9-based genome editing platform for Cronobacter. We developed a dual-plasmid platform, pAmpCRISPR/pCasCm, by integrating CRISPR/Cas9 with the λ-Red recombination machinery. This platform enables scarless genome editing in Cronobacter malonaticus and proved effective for gene knockout and large-fragment integration under the tested conditions. Furthermore, we validated this platform in another clinically relevant species, Cronobacter sakazakii. The development of this genome editing toolkit provides a useful approach for fundamental research into Cronobacter pathogenesis, such as bacterial physiology studies, drug target exploration, and metabolic engineering.
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