Lowder Levi, Malzahn Aimee, Qi Yiping
Department of Biology, East Carolina University Greenville, NC, USA.
Front Plant Sci. 2016 Nov 14;7:1683. doi: 10.3389/fpls.2016.01683. eCollection 2016.
Advanced CRISPR-Cas9 based technologies first validated in mammalian cell systems are quickly being adapted for use in plants. These new technologies increase CRISPR-Cas9's utility and effectiveness by diversifying cellular capabilities through expression construct system evolution and enzyme orthogonality, as well as enhanced efficiency through delivery and expression mechanisms. Here, we review the current state of advanced CRISPR-Cas9 and Cpf1 capabilities in plants and cover the rapid evolution of these tools from first generation inducers of double strand breaks for basic genetic manipulations to second and third generation multiplexed systems with myriad functionalities, capabilities, and specialized applications. We offer perspective on how to utilize these tools for currently untested research endeavors and analyze strengths and weaknesses of novel CRISPR systems in plants. Advanced CRISPR functionalities and delivery options demonstrated in plants are primarily reviewed but new technologies just coming to the forefront of CRISPR development, or those on the horizon, are briefly discussed. Topics covered are focused on the expansion of expression and delivery capabilities for CRISPR-Cas9 components and broadening targeting range through orthogonal Cas9 and Cpf1 proteins.
最初在哺乳动物细胞系统中得到验证的基于先进CRISPR - Cas9的技术正迅速被应用于植物中。这些新技术通过表达构建系统进化和酶的正交性使细胞功能多样化,以及通过递送和表达机制提高效率,从而增加了CRISPR - Cas9的实用性和有效性。在此,我们综述了植物中先进CRISPR - Cas9和Cpf1技术的现状,并涵盖了这些工具从用于基础基因操作的第一代双链断裂诱导剂到具有多种功能、能力和特殊应用的第二代和第三代多重系统的快速发展。我们就如何将这些工具用于目前未经测试的研究工作提供了观点,并分析了植物中新型CRISPR系统的优缺点。本文主要综述了植物中已展示的先进CRISPR功能和递送选项,但也简要讨论了刚刚成为CRISPR发展前沿的新技术或即将出现的技术。所涵盖的主题聚焦于CRISPR - Cas9组件的表达和递送能力的扩展,以及通过正交Cas9和Cpf1蛋白拓宽靶向范围。