基因组编辑
生物
清脆的
RNA编辑
Cas9
计算生物学
同源定向修复
素数(序理论)
基因
引导RNA
同源(生物学)
计算机科学
遗传学
内含子
DNA修复
数学
组合数学
DNA错配修复
作者
Zhong-Sen Li,Rui Ma,Dan Liu,Mingyue Wang,Ting Zhu,Deng Yanxue
出处
期刊:Plant Science
[Elsevier]
日期:2022-10-01
卷期号:323: 111400-111400
被引量:4
标识
DOI:10.1016/j.plantsci.2022.111400
摘要
CRISPR Cas9-mediated genome editing is highly efficient at targeted site-specific gene knock-out through NHEJ (Non-Homology End Joining), but ineffective for specific DNA integration through HDR (Homology Directed Repair) for precise gene editing. Base editors can make limited base substitutions but only within restricted small windows of the protospacer. Prime editing has been applied in plants with various degrees of success. However, several questions such as low and inconsistent editing efficiencies across different target sites need to be addressed. We compared two prime editing approaches PE3 and PE2 at two neighboring target sites within rice Waxy gene to partially address those questions. A straightforward PE2 plant prime editing system retrofitted from a regular CRISPR-Cas9 editing system can deliver highly efficient up to 66.7% precise gene editing. Various forms of precise editing including base substitutions, small deletions and insertions can be accurately achieved. The secondary structure variations of different pegRNAs may be the primary reason for inconsistent editing across different target sites and should be the optimization focus to further improve plant prime editing.
科研通智能强力驱动
Strongly Powered by AbleSci AI