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- Title
- Programmed gRNA removal system for CRISPR-Cas9-mediated multi-round genome editing in Bacillus subtilis
- Author(s)
- Hayeon Lim; Soo Keun Choi
- Bibliographic Citation
- Frontiers in Microbiology, vol. 10, pp. 1140-1140
- Publication Year
- 2019
- Abstract
- CRISPR/Cas9 has become a simple and powerful genome editing tool for many
organisms. However, multi-round genome editing should replace single-guide RNA
(sgRNA) every round, which is laborious and time-consuming. Here, we have developed
a multi-round genome editing system in which genome editing and the programmed
removal of the sgRNA have sequentially occurred in a growth-dependent manner in
Bacillus subtilis. The system contains two plasmids, one containing a cas9 gene and the
other containing two sgRNAs and a donor DNA for homology directed repair (HDR). The
two sgRNAs are chromosome-targeting (sgRNAct) and self-targeting (sgRNAst) under
the control of a constitutive promoter and sporulation-specific promoter, respectively.
In the growth phase, the sgRNAct is transcribed and complexed with the Cas9 to edit
the chromosomal target, while the sgRNAst is transcribed in the sporulation phase and
complexed with the Cas9 to attack its own plasmid. Therefore, the system automatically
makes the cell ready for next-round genome editing during cultivation. The system
was approved through the sequential deletion of eight extracellular protease genes in
the B. subtilis, suggesting that it can be used for versatile applications in multi-round
genome editing.
- Keyword
- cillus subtilisCRISPR/Cas9self-curinggenome editingextracellular protease
- ISSN
- 1664-302x
- Publisher
- Frontiers Media Sa
- Full Text Link
- http://dx.doi.org/10.3389/fmicb.2019.01140
- Type
- Article
- Appears in Collections:
- Division of Research on National Challenges > Infectious Disease Research Center > 1. Journal Articles
- Files in This Item:
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