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利用甜菜曲顶病毒在植物中进行靶向诱变,以有效递呈 CRISPR/Cas12a 组件。

Targeted mutagenesis in plants using Beet curly top virus for efficient delivery of CRISPR/Cas12a components.

机构信息

Department of Plant Protection, University of Zanjan, 313, Zanjan, Iran; Department of Phytopathology, Institute for Sugar Beet Research, 37079, Göttingen, Germany.

KWS Saat SE & Co. KGaA, 37574, Einbeck, Germany.

出版信息

N Biotechnol. 2022 Mar 25;67:1-11. doi: 10.1016/j.nbt.2021.12.002. Epub 2021 Dec 8.

Abstract

Genome editing using CRISPR/Cas is rapidly being developed for gene targeting in eukaryotes including plants. However, gene targeting by homology-directed DNA recombination (HDR) is an infrequent event compared to the dominant DNA repair by non-homologous end-joining. Another bottleneck is the ineffective delivery of CRISPR/Cas components into plant cells. To overcome these constraints, here a geminiviral replicon from Beet curly top virus (BCTV) has been produced with a wide host range and high DNA accumulation capacity for efficient delivery of CRISPR/Cas12a components into plant cells. Initially, a BCTV replicon was prepared after removing the virion sense genes from an infectious full-length clone for agrobacterium mediated infection. This replicon expressed a green fluorescent protein (GFP) marker gene at a high level compared to T-DNA binary vector. In transient assay, the BCTV replicon produced a higher rate of mutagenesis and HDR in the GFP transgene in Nicotiana benthamiana through efficient delivery of CRISPR/Cas12a components compared to the cognate T-DNA control. This was through a range of complete or partial HDR for conversion of GFP into YFP after exchange of a single amino acid (Thr224Tyr) in the target gene. In addition, induced mutagenesis and HDR in the target gene were heritable. Thus, the BCTV replicon provides a new tool for efficient delivery of CRISPR/Cas12a components that could be used in a wide range of dicotyledonous plants. The established GFP to YFP system and the GFP mutant line produced also enable further optimization and understanding of HDR in plants via CRISPR/Cas12a system using geminiviral replicons.

摘要

利用 CRISPR/Cas 进行基因组编辑正在迅速发展,可用于真核生物(包括植物)中的基因靶向。然而,与非同源末端连接的主导 DNA 修复相比,同源定向 DNA 重组(HDR)的基因靶向是一个罕见的事件。另一个瓶颈是 CRISPR/Cas 组件向植物细胞的无效传递。为了克服这些限制,这里使用了来自甜菜曲顶病毒(BCTV)的 geminiviral 复制子,该复制子具有广泛的宿主范围和高 DNA 积累能力,可有效递送至植物细胞中的 CRISPR/Cas12a 组件。最初,从传染性全长克隆中去除病毒粒子感测基因后,制备了 BCTV 复制子,用于农杆菌介导的感染。与 T-DNA 二元载体相比,该复制子高水平表达了绿色荧光蛋白(GFP)标记基因。在瞬时测定中,与同源 T-DNA 对照相比,BCTV 复制子通过有效递送至 CRISPR/Cas12a 组件,在 Nicotiana benthamiana 中的 GFP 转基因中产生了更高的突变率和 HDR。这是通过在靶基因中交换单个氨基酸(Thr224Tyr)后,将 GFP 完全或部分转换为 YFP 的一系列 HDR 实现的。此外,靶基因中的诱导突变和 HDR 是可遗传的。因此,BCTV 复制子为高效递送至 CRISPR/Cas12a 组件提供了一种新工具,可用于广泛的双子叶植物。建立的 GFP 至 YFP 系统和产生的 GFP 突变系也可通过利用 geminiviral 复制子的 CRISPR/Cas12a 系统进一步优化和理解植物中的 HDR。

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