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A highly efficient ligation-independent cloning system for CRISPR/Cas9 based genome editing in plants

机译:用于植物中基于CRISPR / CAS9基因组的Crispr / Cas9基因组的高效结扎克隆系统

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摘要

Abstract Background Most current methods for constructing guide RNAs (gRNA) for the CRISPR/Cas9 genome editing system, depend on traditional cloning using specific type IIS restriction enzymes and DNA ligation. These methods consist of multiple steps of cloning, and are time consuming, resource intensive and not flexible. These issues are particularly exacerbated when multiple guide RNAs need to be assembled in one plasmid such as for multiplexing or for the paired nickases approach. Furthermore, identification of functional gRNA clones usually requires expensive in vitro screening. Addressing these issues will greatly facilitate usage and accessibility of CRISPR/Cas9 genome editing system to resource-limited laboratories. Results To improve efficiency of cloning multiple guide RNAs for the CRISPR/Cas9 system, we developed a restriction enzyme- and ligation-independent strategy for cloning gRNAs directly in plant expression vectors in one step. Our method relies on a negative selection marker and seamless cloning for combining multiple gRNAs directly in a plant expression vector in one reaction. In addition, using the Agrobacterium-mediated transient assays, this method provides a simple in planta procedure for assaying the effectiveness of multiple gRNAs very rapidly. Conclusions For a fraction of resources used in the type IIS restriction enzyme-based cloning method and in vitro screening assays, the system reported here allows efficient construction and testing several ready-to-transfect gRNA constructs in < 3 days. In addition, this system is highly versatile and flexible, and by designing only two additional target-specific primers, multiple gRNAs can be easily assembled in any plasmid in a single reaction.
机译:摘要制造用于构建CRISPR / CAS9基因组编辑系统的指南RNA(GRNA)的最新方法,取决于使用特异性IIS限制酶和DNA连接的传统克隆。这些方法包括多个克隆步骤,并且是耗时,资源密集且不灵活。当需要在一个质粒中组装多个导向RNA时,这些问题特别加剧,例如用于复用或用于配对的乳蛋白酶方法。此外,功能性GRNA克隆的鉴定通常需要昂贵的体外筛选。解决这些问题将极大地促进CRISPR / CAS9基因组编辑系统的使用和可访问性,以资源有限的实验室。结果提高CRISPR / CAS9系统克隆多指导RNA的效率,我们开发了一种在一步中直接克隆GRNA的限制酶和结扎无关的策略。我们的方法依赖于在一次反应中直接在植物表达载体中组合多个GRNA的负选择标记和无缝克隆。此外,使用农杆菌介导的瞬态测定,该方法在植物组中提供了一种简单的方法,用于测定多GRNA的效果非常迅速。结论在此基于IIS限制酶的克隆方法和体外筛选测定中使用的一部分资源,在此报告的系统允许在<3天内有效施工和测试几种即转染的GRNA构建体。此外,该系统具有高通用和灵活性,并且通过仅设计两个额外的靶特异性引物,可以在单一反应中容易地在任何质粒中容易地组装多个GRNA。

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