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Strategies to Increase On-Target and Reduce Off-Target Effects of the CRISPR/Cas9 System in Plants

机译:提高植物中CRISPR / Cas9系统的靶上效应和减少脱靶效应的策略

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摘要

The CRISPR/Cas9 system (clustered regularly interspaced short palindromic repeat-associated protein 9) is a powerful genome-editing tool in animals, plants, and humans. This system has some advantages, such as a high on-target mutation rate (targeting efficiency), less cost, simplicity, and high-efficiency multiplex loci editing, over conventional genome editing tools, including meganucleases, transcription activator-like effector nucleases (TALENs), and zinc finger nucleases (ZFNs). One of the crucial shortcomings of this system is unwanted mutations at off-target sites. We summarize and discuss different approaches, such as dCas9 and Cas9 paired nickase, to decrease the off-target effects in plants. According to studies, the most effective method to reduce unintended mutations is the use of ligand-dependent ribozymes called aptazymes. The single guide RNA (sgRNA)/ligand-dependent aptazyme strategy has helped researchers avoid unwanted mutations in human cells and can be used in plants as an alternative method to dramatically decrease the frequency of off-target mutations. We hope our concept provides a new, simple, and fast gene transformation and genome-editing approach, with advantages including reduced time and energy consumption, the avoidance of unwanted mutations, increased frequency of on-target changes, and no need for external forces or expensive equipment.
机译:CRISPR / Cas9系统(聚簇的规则间隔的短回文重复相关蛋白9)是动植物,人和人类的强大基因组编辑工具。与传统的基因组编辑工具(包括大范围核酸酶,转录激活因子样效应子核酸酶(TALENs))相比,该系统具有一些优势,例如高的目标突变率(靶向效率),成本更低,操作简便,高效的多重基因座编辑。 )和锌指核酸酶(ZFN)。该系统的关键缺陷之一是脱靶位点的不需要的突变。我们总结并讨论了不同的方法,例如dCas9和Cas9配对切口酶,以减少植物的脱靶效应。根据研究,减少意外突变的最有效方法是使用依赖于配体的核酶,称为核酶。单指导RNA(sgRNA)/配体依赖性的适体酶策略已帮助研究人员避免了人类细胞中的有害突变,并且可以在植物中用作替代方法,以大大降低脱靶突变的频率。我们希望我们的概念能够提供一种新的,简单且快速的基因转化和基因组编辑方法,其优点包括减少时间和能源消耗,避免不必要的突变,增加目标变化的频率以及不需要外力或昂贵的设备。

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