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利用SpCas9和多个引导RNA在拟南芥中进行靶向基因缺失:四个比两个更好。

Targeted gene deletion with SpCas9 and multiple guide RNAs in Arabidopsis thaliana: four are better than two.

作者信息

Ordon Jana, Kiel Niklas, Becker Dieter, Kretschmer Carola, Schulze-Lefert Paul, Stuttmann Johannes

机构信息

Department of Plant-Microbe Interactions, Max-Planck Institute for Plant Breeding Research, D50829, Cologne, Germany.

Cluster of Excellence on Plant Sciences (CEPLAS), Max Planck Institute for Plant Breeding Research, Cologne, Germany.

出版信息

Plant Methods. 2023 Mar 28;19(1):30. doi: 10.1186/s13007-023-01010-4.

Abstract

BACKGROUND

In plant genome editing, RNA-guided nucleases such as Cas9 from Streptococcus pyogenes (SpCas9) predominantly induce small insertions or deletions at target sites. This can be used for inactivation of protein-coding genes by frame shift mutations. However, in some cases, it may be advantageous to delete larger chromosomal segments. This is achieved by simultaneously inducing double strand breaks upstream and downstream of the segment to be deleted. Experimental approaches for the deletion of larger chromosomal segments have not been systematically evaluated.

RESULTS

We designed three pairs of guide RNAs for deletion of a ~ 2.2 kb chromosomal segment containing the Arabidopsis WRKY30 locus. We tested how the combination of guide RNA pairs and co-expression of the exonuclease TREX2 affect the frequency of wrky30 deletions in editing experiments. Our data demonstrate that compared to one pair of guide RNAs, two pairs increase the frequency of chromosomal deletions. The exonuclease TREX2 enhanced mutation frequency at individual target sites and shifted the mutation profile towards larger deletions. However, TREX2 did not elevate the frequency of chromosomal segment deletions.

CONCLUSIONS

Multiplex editing with at least two pairs of guide RNAs (four guide RNAs in total) elevates the frequency of chromosomal segment deletions at least at the AtWRKY30 locus, and thus simplifies the selection of corresponding mutants. Co-expression of the TREX2 exonuclease can be used as a general strategy to increase editing efficiency in Arabidopsis without obvious negative effects.

摘要

背景

在植物基因组编辑中,诸如来自化脓性链球菌的Cas9(SpCas9)等RNA引导核酸酶主要在靶位点诱导小的插入或缺失。这可用于通过移码突变使蛋白质编码基因失活。然而,在某些情况下,删除较大的染色体片段可能是有利的。这是通过在要删除的片段的上游和下游同时诱导双链断裂来实现的。删除较大染色体片段的实验方法尚未得到系统评估。

结果

我们设计了三对引导RNA,用于删除包含拟南芥WRKY30基因座的约2.2 kb染色体片段。我们测试了引导RNA对的组合以及核酸外切酶TREX2的共表达如何在编辑实验中影响wrky30缺失的频率。我们的数据表明,与一对引导RNA相比,两对引导RNA可提高染色体缺失的频率。核酸外切酶TREX2提高了各个靶位点的突变频率,并使突变谱向更大的缺失方向转变。然而,TREX2并没有提高染色体片段缺失的频率。

结论

至少两对引导RNA(总共四个引导RNA)的多重编辑至少在AtWRKY30基因座提高了染色体片段缺失的频率,从而简化了相应突变体的筛选。核酸外切酶TREX2的共表达可作为提高拟南芥编辑效率的通用策略,且无明显负面影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b6f5/10053088/4825b4b183d9/13007_2023_1010_Fig1_HTML.jpg

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