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An integrated CRISPR Bombyx mori genome editing system with improved efficiency and expanded target sites

机译:具有提高效率和扩展目标站点的集成CRISPRBOMBYX MORI基因组编辑系统

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摘要

Genome editing enabled unprecedented new opportunities for targeted genomic engineering of a wide variety of organisms ranging from microbes, plants, animals and even human embryos. The serial establishing and rapid applications of genome editing tools significantly accelerated Bombyx mori (B. mori) research during the past years. However, the only CRISPR system in B. mori was the commonly used SpCas9, which only recognize target sites containing NGG PAM sequence. In the present study, we first improve the efficiency of our previous established SpCas9 system by 3.5 folds. The improved high efficiency was also observed at several loci in both BmNs cells and B. mori embryos. Then to expand the target sites, we showed that two newly discovered CRISPR system, SaCas9 and AsCpf1, could also induce highly efficient site-specific genome editing in BmNs cells, and constructed an integrated CRISPR system. Genome-wide analysis of targetable sites was further conducted and showed that the integrated system cover 69,144,399 sites in B. mod genome, and one site could be found in every 6.5 bp. The efficiency and resolution of this CRISPR platform will probably accelerate both fundamental researches and applicable studies in B. mori, and perhaps other insects. (C) 2017 Elsevier Ltd. All rights reserved.
机译:基因组编辑使各种生物的针对性基因组工程提供了前所未有的新机会,范围从微生物,植物,动物甚至人类胚胎的各种生物。基因组编辑工具的连续建立和快速应用在过去几年中的Bombyx Mori(B. Mori)研究显着加速了。但是,B. Mori中唯一的Crisp系统是常用的SPCAS9,它只识别包含NGG PAM序列的目标站点。在本研究中,我们首先将先前已建立的SPCAS9系统的效率提高了3.5倍。在BMNS细胞和B. Mori胚胎中的几个基因座上也观察到改善的高效率。然后扩展目标网站,我们展示了两个新发现的CRISPR系统,SACAS9和ASCPF1也可以在BMNS细胞中诱导高效的特异性基因组编辑,并构建了一块集成的CRISPR系统。进一步进行了对可靶位位点的基因组分析,并显示了B.Mod基因组中的综合系统覆盖了69,144,399位点,并且可以在每6.5bp中找到一个位点。这种CRISPR平台的效率和解决可能会加速B. Mori的基本研究和适用的研究,也许是其他昆虫。 (c)2017 Elsevier Ltd.保留所有权利。

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