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Targeted large fragment deletion in plants using paired crRNAs with type I CRISPR system.


ABSTRACT: The CRISPR-Cas systems have been widely used as genome editing tools, with type II and V systems typically introducing small indels, and type I system mediating long-range deletions. However, the precision of type I systems for large fragment deletion is still remained to be optimized. Here, we developed a compact Cascade-Cas3 Dvu I-C system with Cas11c for plant genome editing. The Dvu I-C system was efficient to introduce controllable large fragment deletion up to at least 20 kb using paired crRNAs. The paired-crRNAs design also improved the controllability of deletions for the type I-E system. Dvu I-C system was sensitive to spacer length and mismatch, which was benefit for target specificity. In addition, we showed that the Dvu I-C system was efficient for generating stable transgenic lines in maize and rice with the editing efficiency up to 86.67%. Overall, Dvu I-C system we developed here is powerful for achieving controllable large fragment deletions.

SUBMITTER: Li Y 

PROVIDER: S-EPMC10579709 | biostudies-literature | 2023 Nov

REPOSITORIES: biostudies-literature

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Targeted large fragment deletion in plants using paired crRNAs with type I CRISPR system.

Li Yingnan Y   Huang Boyu B   Chen Jian J   Huang Liangliang L   Xu Jianghai J   Wang Yingying Y   Cui Guanghui G   Zhao Haiming H   Xin Beibei B   Song Weibin W   Zhu Jian-Kang JK   Lai Jinsheng J  

Plant biotechnology journal 20230829 11


The CRISPR-Cas systems have been widely used as genome editing tools, with type II and V systems typically introducing small indels, and type I system mediating long-range deletions. However, the precision of type I systems for large fragment deletion is still remained to be optimized. Here, we developed a compact Cascade-Cas3 Dvu I-C system with Cas11c for plant genome editing. The Dvu I-C system was efficient to introduce controllable large fragment deletion up to at least 20 kb using paired c  ...[more]

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