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用于高效多基因编辑的通用克隆策略 于……中 (原文句子不完整,翻译可能存在一定局限性)

Versatile Cloning Strategy for Efficient Multigene Editing in .

作者信息

Li Ziqiang P, Huard Jennifer, Bayer Emmanuelle M, Wattelet-Boyer Valérie

机构信息

UMR 5200 Laboratoire de Biogenèse Membranaire, CNRS-University of Bordeaux, Villenave d'Ornon, France.

Institute of Science and Technology Austria, Klosterneuburg, Austria.

出版信息

Bio Protoc. 2024 Jul 5;14(13):e5029. doi: 10.21769/BioProtoc.5029.

Abstract

CRISPR-Cas9 technology has become an essential tool for plant genome editing. Recent advancements have significantly improved the ability to target multiple genes simultaneously within the same genetic background through various strategies. Additionally, there has been significant progress in developing methods for inducible or tissue-specific editing. These advancements offer numerous possibilities for tailored genome modifications. Building upon existing research, we have developed an optimized and modular strategy allowing the targeting of several genes simultaneously in combination with the synchronized expression of the Cas9 endonuclease in the egg cell. This system allows significant editing efficiency while avoiding mosaicism. In addition, the versatile system we propose allows adaptation to inducible and/or tissue-specific edition according to the promoter chosen to drive the expression of the Cas9 gene. Here, we describe a step-by-step protocol for generating the binary vector necessary for establishing edited lines using a versatile cloning strategy that combines Gateway and Golden Gate technologies. We describe a versatile system that allows the cloning of as many guides as needed to target DNA, which can be multiplexed into a polycistronic gene and combined in the same construct with sequences for the expression of the Cas9 endonuclease. The expression of Cas9 is controlled by selecting from among a collection of promoters, including constitutive, inducible, ubiquitous, or tissue-specific promoters. Only one vector containing the polycistronic gene (tRNA-sgRNA) needs to be constructed. For that, sgRNA (composed of protospacers chosen to target the gene of interest and sgRNA scaffold) is cloned in tandem with the pre-tRNA sequence. Then, a single recombination reaction is required to assemble the promoter, the zCas9 coding sequence, and the tRNA-gRNA polycistronic gene. Each element is cloned in an entry vector and finally assembled according to the Multisite Gateway Technology. Here, we detail the process to express zCas9 under the control of egg cell promoter fused to enhancer sequence (EC1.2en-EC1.1p) and to simultaneously target two multiple C2 domains and transmembrane region protein genes ( and , respectively at3g57880 and at1g51570), using one or two sgRNA per gene. Key features • A simple method for edited lines establishment using CRISPR-Cas9 technology • Versatile cloning strategy combining various technologies for convenient cloning (Gateway, Golden Gate) • Multigene targeting with high efficiency.

摘要

CRISPR-Cas9技术已成为植物基因组编辑的重要工具。最近的进展通过各种策略显著提高了在同一遗传背景下同时靶向多个基因的能力。此外,在开发诱导型或组织特异性编辑方法方面也取得了重大进展。这些进展为定制基因组修饰提供了众多可能性。基于现有研究,我们开发了一种优化的模块化策略,允许在卵细胞中同时靶向多个基因,并使Cas9核酸内切酶同步表达。该系统具有显著的编辑效率,同时避免了嵌合体现象。此外,我们提出的通用系统允许根据选择驱动Cas9基因表达的启动子,适应诱导型和/或组织特异性编辑。在这里,我们描述了一个逐步方案,用于使用结合了Gateway和Golden Gate技术的通用克隆策略来生成建立编辑系所需的二元载体。我们描述了一个通用系统,该系统允许克隆任意数量的用于靶向DNA的向导序列,这些序列可以多路复用成一个多顺反子基因,并在同一构建体中与Cas9核酸内切酶表达序列组合。Cas9的表达通过从包括组成型、诱导型、遍在型或组织特异性启动子的启动子集合中进行选择来控制。只需要构建一个包含多顺反子基因(tRNA-sgRNA)的载体。为此,将sgRNA(由选择用于靶向感兴趣基因的原间隔序列和sgRNA支架组成)与前体tRNA序列串联克隆。然后,需要一个单一的重组反应来组装启动子、zCas9编码序列和tRNA-gRNA多顺反子基因。每个元件都克隆到一个入门载体中,最后根据多位点Gateway技术进行组装。在这里,我们详细描述了在与增强子序列(EC1.2en-EC1.1p)融合的卵细胞启动子控制下表达zCas9,并同时靶向两个多个C2结构域和跨膜区域蛋白基因(分别位于at3g57880和at1g51570)的过程,每个基因使用一个或两个sgRNA。关键特性:• 使用CRISPR-Cas9技术建立编辑系的简单方法;• 结合多种技术实现便捷克隆的通用克隆策略(Gateway、Golden Gate);• 高效的多基因靶向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e8ea/11237983/5df48752fe36/BioProtoc-14-13-5029-g001.jpg

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