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Cas9 介导的植物靶向诱变。

Cas9-Mediated Targeted Mutagenesis in Plants.

机构信息

Earlham Institute, Norwich Research Park, Norwich, Norfolk, UK.

John Innes Centre, Norwich Research Park, Norwich, Norfolk, UK.

出版信息

Methods Mol Biol. 2022;2379:1-26. doi: 10.1007/978-1-0716-1791-5_1.

Abstract

Genome engineering technologies enable targeted mutations to be induced at almost any location in plant genomes. In particular, Cas9 nucleases use easily recoded RNA guides to target user-defined sequences and generate double-stranded breaks (DSB) that are then repaired by the cell's endogenous repair mechanisms. Incorrect repair results in mutations at the target. When the targets are in coding sequences, this often results in loss-of-function mutations. In this chapter, we describe a method to rapidly design and assemble RNA-guided Cas9 constructs for plants and test their ability to induce mutations at their intended targets in rapid assays using both Agrobacterium-mediated transient expression and PEG-mediated DNA delivery to protoplasts, the latter of which can be adapted to a wide range of plant species. We describe a PCR-based method for detecting mutagenesis and outline the steps required to segregate the Cas9 transgene from the targeted mutation to enable the production of transgene-free mutated plants. These techniques are amenable to a range of plant species and should accelerate the application of Cas-9-mediated genome engineering for basic plant science as well as crop development.

摘要

基因组编辑技术可实现对植物基因组中几乎任何位置的靶向突变。具体来说,Cas9 核酸酶利用可重新编码的 RNA 向导靶向用户定义的序列,并产生双链断裂(DSB),然后由细胞内源性修复机制进行修复。错误的修复会导致靶标处发生突变。如果靶标位于编码序列中,通常会导致功能丧失突变。在本章中,我们描述了一种用于植物的快速设计和组装 RNA 引导 Cas9 构建体的方法,并测试了它们在使用农杆菌介导的瞬时表达和 PEG 介导的原生质体 DNA 递送的快速测定中在其预期靶标处诱导突变的能力,后者可适应广泛的植物物种。我们描述了一种基于 PCR 的检测诱变的方法,并概述了从靶向突变中分离 Cas9 转基因以实现无转基因突变植物生产所需的步骤。这些技术适用于多种植物物种,应该加速 Cas9 介导的基因组编辑在基础植物科学和作物开发中的应用。

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