清脆的
生物
终止密码子
基因组编辑
计算生物学
引导RNA
基因敲除
基因
Cas9
遗传学
计算机科学
作者
Yuechao Wu,Yao He,Simon Sretenovic,Shishi Liu,Yanhao Cheng,Yangshuo Han,Guanqing Liu,Yu Bao,Qing Fang,Xuelian Zheng,Jianping Zhou,Yiping Qi,Yong Zhang,Tao Zhang
摘要
Summary Cytosine base editors (CBEs) can install a predefined stop codon at the target site, representing a more predictable and neater method for creating genetic knockouts without altering the genome size. Due to the enhanced predictability of the editing outcomes, it is also more efficient to obtain homozygous mutants in the first generation. With the recent advancement of CBEs on improved editing activity, purify and specificity in plants and animals, base editing has become a more appealing technology for generating knockouts. However, there is a lack of design tools that can aid the adoption of CBEs for achieving such a purpose, especially in plants. Here, we developed a user‐friendly design tool named CRISPR‐BETS (base editing to stop), which helps with guide RNA (gRNA) design for introducing stop codons in the protein‐coding genes of interest. We demonstrated in rice and tomato that CRISPR‐BETS is easy‐to‐use, and its generated gRNAs are highly specific and efficient for generating stop codons and obtaining homozygous knockout lines. While we tailored the tool for the plant research community, CRISPR‐BETS can also serve non‐plant species.
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