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首页> 外文期刊>Plant and cell physiology >Developing Heritable Mutations in Arabidopsis thaliana Using a Modified CRISPR/Cas9 Toolkit Comprising PAM-Altered Cas9 Variants and gRNAs
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Developing Heritable Mutations in Arabidopsis thaliana Using a Modified CRISPR/Cas9 Toolkit Comprising PAM-Altered Cas9 Variants and gRNAs

机译:使用包括PAM改变的Cas9变体和GRNA的修改的CRISPR / CAS9工具包在拟南芥拟南芥中开发遗传突变

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摘要

Clustered regularly interspaced short palindromic repeat (CRISPR)/CRISPR-associated protein 9 (Cas9), comprising an RNA-guided DNA endonuclease and a programmable guide RNA (gRNA), is currently recognized to be a powerful genome-editing tool and is widely used in biological science. Despite the usefulness of the system, a protospacer-adjacent motif (PAM) immediately downstream of the target sequence needs to be taken into account in the design of the gRNA, a requirement which limits the flexibility of the CRISPR-based genome-editing system. To overcome this limitation, a Cas9 isolated from Streptococcus pyogenes, namely SpCas9, engineered to develop several variants of Cas9 nuclease, has been generated. SpCas9 recognizes the NGG sequence as the PAM, whereas its variants are capable of interacting with different PAMs. Despite the potential advantage of the Cas9 variants, their functionalities have not previously been tested in the widely used model plant, Arabidopsis thaliana. Here, we developed a plant-specific vector series harboring SpCas9-VQR (NGAN or NGNG) or SpCas9-EQR (NGAG) and evaluated their functionalities. These modified Cas9 nucleases efficiently introduced mutations into the CLV3 and AS1 target genes using gRNAs that were compatible with atypical PAMs. Furthermore, the generated mutations were passed on to their offspring. This study illustrated the usefulness of the SpCas9 variants because the ability to generate heritable mutations will be of great benefit in molecular genetic analyses. A greater number of potential SpCas9-variant-recognition sites in these genes are predicted, compared with those of conventional SpCas9. These results demonstrated the usefulness of the SpCas9 variants for genome editing in the field of plant science research.
机译:群体定期间隙的短语重复(CRISPR)/ CRISPR相关蛋白质9(CAS9),包括RNA引导的DNA内切核酸酶和可编程导向RNA(GRNA),目前被认为是一种强大的基因组编辑工具,并且被广泛使用生物科学。尽管系统的有用性,但在GRNA的设计中,需要考虑立即下游的原始晶体相邻的基序(PAM),这是限制基于CRISPR的基因组编辑系统的灵活性的要求。为了克服这种限制,已经产生了从链球菌中分离的CAS9,即SPCAS9,以制造用于开发CAS9核酸酶的几种变体的SPCAS9。 SPCAS9将NGG序列识别为PAM,而其变体能够与不同的PAM相互作用。尽管Cas9变体的潜在优势,但其功能先前没有在广泛使用的模型植物,拟南芥中进行过测试。在这里,我们开发了一种植物特定的载体系列覆盆性SPCAS9-VQR(NGN或NGNG)或SPCAS9-EQR(NGAG)并评估其功能。这些改性CAS9核酸酶使用与非典型PAM兼容的GRNA有效地将突变引入CLV3和AS1靶基因中。此外,将产生的突变传递给它们的后代。本研究说明了SPCAS9变体的有用性,因为产生遗传突变的能力将在分子遗传分析中具有很大的益处。与传统SPCAS9相比,预测了这些基因中更多的潜在的SPCAS9-变体识别位点。这些结果表明了植物科学研究领域基因组编辑的SPCAS9变体的有用性。

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