核酸酶介导的引物编辑技术在水稻基因原位表位标记中的应用

Xueqi Li, Sujie Zhang, Chenyang Wang, Bin Ren, Fang Yan, Shaofang Li, Carl Spetz, Jinguang Huang, Xueping Zhou, Huanbin Zhou
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引用次数: 0

摘要

原位表位标记对于探测基因表达、蛋白质定位和蛋白质相互作用在其自然细胞环境中的动态至关重要。然而,该技术在植物中的实际应用存在相当大的障碍。在这里,我们全面探索了CRISPR/Cas核酸酶介导的引物编辑和不同DNA修复途径在水稻内源基因表位标记中的潜力。我们发现基于SpCas9核酸酶/微同源介导的末端连接(MMEJ)的引物编辑(PE)策略(称为NM-PE)与传统的和其他衍生的PE方法相比,可以更直接和有效地进行基因标记。此外,pam柔性SpRY和基于ScCas9核酸酶的引物编辑器已被设计和实施,用于标记具有不同表位的内源基因,显著扩大了NM-PE在水稻中的适用性。此外,NM-PE已成功地分别用c-Myc和HA标记同时标记水稻MAP激酶(MPK)基因OsMPK1和OsMPK13。综上所述,NM-PE工具箱在水稻蛋白标记项目的靶向基因标记、基因功能研究和遗传改良方面具有很大的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Efficient in situ epitope tagging of rice genes by nuclease-mediated prime editing
In situ epitope tagging is crucial for probing gene expression, protein localization, and the dynamics of protein interactions within their natural cellular context. However, the practical application of this technique in plants presents considerable hurdles. Here, we comprehensively explored the potential of the CRISPR/Cas nuclease-mediated prime editing and different DNA repair pathways in epitope tagging of endogenous rice (Oryza sativa) genes. We found that a SpCas9 nuclease/microhomology-mediated end joining (MMEJ)-based prime editing (PE) strategy (termed NM-PE) facilitates more straightforward and efficient gene tagging compared to the conventional and other derivative PE methods. Furthermore, the PAM-flexible SpRY and ScCas9 nucleases-based prime editors have been engineered and implemented for the tagging of endogenous genes with diverse epitopes, significantly broadening the applicability of NM-PE in rice. Moreover, NM-PE has been successfully adopted in simultaneous tagging of the MAP kinase (MPK) genes OsMPK1 and OsMPK13 in rice plants with c-Myc and HA tags, respectively. Taken together, our results indicate great potential of the NM-PE toolkit in the targeted gene tagging for Rice Protein Tagging Project, gene function study and genetic improvement.
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