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基于 CRISPR/LbCas12a 的高效多基因编辑方法在Physcomitrella patens 中的应用。

A CRISPR/LbCas12a-based method for highly efficient multiplex gene editing in Physcomitrella patens.

机构信息

Key Laboratory for Economic Plants and Biotechnology, Kunming Institute of Botany, Chinese Academy of Sciences, and Yunnan Key Laboratory for Wild Plant Resources, Kunming, 650201, China.

University of Chinese Academy of Sciences, Beijing, 100049, China.

出版信息

Plant J. 2019 Nov;100(4):863-872. doi: 10.1111/tpj.14478. Epub 2019 Sep 6.

Abstract

Due to their high efficiency, specificity, and flexibility, programmable nucleases, such as those of the clustered regularly interspaced short palindromic repeats (CRISPR)/Cas12a (Cpf1) system, have greatly expanded the applicability of editing the genomes of various organisms. Genes from different gene families or genes with redundant functions in the same gene family can be examined by assembling multiple CRISPR RNAs (crRNAs) in a single vector. However, the activity and efficiency of CRISPR/Cas12a in the non-vascular plant Physcomitrella patens are largely unknown. Here, we demonstrate that LbCas12a together with its mature crRNA can target multiple loci simultaneously in P. patens with high efficiency via co-delivery of LbCas12a and a crRNA expression cassette in vivo. The mutation frequencies induced by CRISPR/LbCas12a at a single locus ranged from 26.5 to 100%, with diverse deletions being the most common type of mutation. Our method expands the repertoire of genome editing tools available for P. patens and facilitates the creation of loss-of-function mutants of multiple genes from different gene families.

摘要

由于其高效性、特异性和灵活性,可编程核酸酶,如簇状规律间隔短回文重复序列(CRISPR)/Cas12a(Cpf1)系统,极大地扩展了编辑各种生物基因组的适用性。可以通过在单个载体中组装多个 CRISPR RNA(crRNA)来检查来自不同基因家族的基因或同一基因家族中具有冗余功能的基因。然而,CRISPR/Cas12a 在非维管束植物Physcomitrella patens 中的活性和效率在很大程度上是未知的。在这里,我们证明 LbCas12a 与其成熟的 crRNA 可以通过体内共递送 LbCas12a 和 crRNA 表达盒,在 P. patens 中高效地同时靶向多个靶位。CRISPR/LbCas12a 在单个靶位上诱导的突变频率从 26.5%到 100%不等,最常见的突变类型是缺失。我们的方法扩展了 P. patens 可用的基因组编辑工具库,并促进了来自不同基因家族的多个基因的功能丧失突变体的创建。

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