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一种减数分裂细胞特异性CRISPR/Cas9(MSC)系统和自杀性MSC系统在拟南芥中产生可遗传稳定突变体中的应用

The Application of a Meiocyte-Specific CRISPR/Cas9 (MSC) System and a Suicide-MSC System in Generating Inheritable and Stable Mutations in Arabidopsis.

作者信息

Xu Penghui, Su Hang, Chen Wanli, Lu Pingli

机构信息

State Key Laboratory of Genetic Engineering, Ministry of Education Key Laboratory of Biodiversity and Ecological Engineering, Institute of Plant Biology, School of Life Sciences, Fudan University, Shanghai, China.

出版信息

Front Plant Sci. 2018 Jul 13;9:1007. doi: 10.3389/fpls.2018.01007. eCollection 2018.

Abstract

The CRISPR/Cas9 system has been widely used for generating targeted mutations in various species. In Arabidopsis, it largely relies on the edited cells where the Cas9 protein performs its activity to obtain heritable and stable mutated lines. Here, we designed an improved CRISPR/Cas9 system, named as the MSC (meiocyte-specific CRISPR/Cas9) system, in which the expression is driven by an experimentally approved meiocyte-specific promoter ( promoter). Two endogenous genes, including vegetative gene and reproductive gene , were targeted. We obtained heterozygous T1 plants for targeted genes with high efficiency (64%). In the T2 generation, the homozygous plants were abundant with high efficiency (37%). Analysis of Sanger sequencing results of T2 generation revealed that heritable gene mutations were high (52%). Moreover, we showed that the MSC system could sufficiently delete a middle size DNA fragment (∼500 bp) between two cleavage sites with a high rate (64.15%) in the T1 plants, providing direct evidence for making complete knock-out or certain domain-depletion mutations. In addition, we further made a suicide-MSC system, which can edit the targeted endogenous gene and the exogenous gene simultaneously, not only successfully avoiding the further destroy of alleles brought in by molecular complementary or genic allelic test, but also maintaining the stable mutated alleles for functional studies. In short, the two systems provide new approaches to generate mutations for gene functional studies.

摘要

CRISPR/Cas9系统已被广泛用于在各种物种中产生靶向突变。在拟南芥中,它很大程度上依赖于Cas9蛋白发挥活性的编辑细胞来获得可遗传且稳定的突变株系。在此,我们设计了一种改进的CRISPR/Cas9系统,命名为MSC(减数分裂细胞特异性CRISPR/Cas9)系统,其中表达由一个经实验验证的减数分裂细胞特异性启动子驱动。两个内源基因,包括营养基因和生殖基因,被作为靶向目标。我们高效地(64%)获得了靶向基因的杂合T1植株。在T2代中,纯合植株大量出现且效率很高(37%)。对T2代的桑格测序结果分析表明,可遗传基因突变率很高(52%)。此外,我们表明MSC系统能够在T1植株中以高比率(64.15%)充分删除两个切割位点之间的一个中等大小的DNA片段(约500 bp),为进行完全敲除或特定结构域缺失突变提供了直接证据。另外,我们进一步构建了一个自杀性MSC系统,它可以同时编辑靶向内源基因和外源基因,不仅成功避免了分子互补或基因等位性测试带来的等位基因的进一步破坏,还能维持稳定的突变等位基因用于功能研究。简而言之,这两个系统为基因功能研究产生突变提供了新方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/de4e/6055057/58bb26b87841/fpls-09-01007-g001.jpg

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