Liu Mengyuan, Zhang Xiang, Xu Wen, Kang Guiting, Liu Ya, Liu Xinxiang, Ren Wen, Zhao Jiuran, Yang Jinxiao
Beijing Key Laboratory of Maize DNA Fingerprinting and Molecular Breeding, Beijing Academy of Agriculture and Forestry Sciences, Beijing, 100097 China.
aBIOTECH. 2024 Apr 29;5(2):214-218. doi: 10.1007/s42994-024-00153-9. eCollection 2024 Jun.
Efficient and precise genomic deletion shows promise for investigating the function of proteins in plant research and enhancing agricultural traits. In this study, we tested the PRIME-Del (PDel) strategy using a pair of prime editing guide RNAs (pegRNAs) that targeted opposite DNA strands and achieved an average deletion efficiency of 55.8% for 60 bp fragment deletions at six endogenous targets. Moreover, as high as 84.2% precise deletion efficiency was obtained for a 2000 bp deletion at the site in transgenic rice plants. To add the bases that were unintentionally deleted between the two nicking sequences, we used the PDel/Syn strategy, which introduced multiple synonymous base mutations in the region that had to be patched in the RT template. The PDel/Syn strategy achieved an average of 58.1% deletion efficiency at six endogenous targets, which was higher than the PDel strategy. The strategies presented in this study contribute to achieving more accurate and flexible deletions in transgenic rice plants.
The online version contains supplementary material available at 10.1007/s42994-024-00153-9.
高效且精确的基因组缺失在植物研究中探究蛋白质功能以及改良农艺性状方面展现出了潜力。在本研究中,我们使用一对靶向相反DNA链的引导编辑向导RNA(pegRNAs)测试了PRIME-Del(PDel)策略,在六个内源性靶点上对60bp片段缺失实现了平均55.8%的缺失效率。此外,在转基因水稻植株的位点上,对于2000bp的缺失获得了高达84.2%的精确缺失效率。为了添加在两个切口序列之间意外缺失的碱基,我们使用了PDel/Syn策略,该策略在RT模板中需要修补的区域引入了多个同义碱基突变。PDel/Syn策略在六个内源性靶点上平均实现了58.1%的缺失效率,高于PDel策略。本研究中提出的策略有助于在转基因水稻植株中实现更准确、灵活的缺失。
在线版本包含可在10.1007/s42994-024-00153-9获取的补充材料。