a Department of Agronomy and Plant Genetics ; University of Minnesota ; Saint Paul , MN USA.
b School of Agronomy; Anhui Agricultural University ; Hefei , China.
GM Crops Food. 2015;6(4):243-52. doi: 10.1080/21645698.2015.1106063.
The CRISPR/Cas9 system is rapidly becoming the reagent of choice for targeted mutagenesis and gene editing in crop species. There are currently intense research efforts in the crop sciences to identify efficient CRISPR/Cas9 platforms to carry out targeted mutagenesis and gene editing projects. These efforts typically result in the incremental tweaking of various platform components including the identification of crop-specific promoters and terminators for optimal expression of the Cas9 enzyme and identification of promoters for expression of the CRISPR guide RNA. In this report, we demonstrate the development of an online web tool for fast identification of CRISPR/Cas9 target loci within soybean gene models, and generic DNA sequences. The web-tool described in this work can quickly identify a high number of potential CRISPR/Cas9 target sites, including restriction enzyme sites that can facilitate the detection of new mutations. In conjunction with the web tool, a soybean codon-optimized CRISPR/Cas9 platform was designed to direct double-stranded breaks to the targeted loci in hairy root transformed cells. The modified Cas9 enzyme was shown to successfully mutate target genes in somatic cells of 2 legume species, soybean and Medicago truncatula. These new tools may help facilitate targeted mutagenesis in legume and other plant species.
CRISPR/Cas9 系统正迅速成为作物物种中靶向诱变和基因编辑的首选试剂。目前,作物科学领域正在进行大量研究,以确定有效的 CRISPR/Cas9 平台来进行靶向诱变和基因编辑项目。这些努力通常会对各种平台组件进行增量调整,包括鉴定作物特异性启动子和终止子以优化 Cas9 酶的表达,以及鉴定 CRISPR 指导 RNA 表达的启动子。在本报告中,我们展示了一种在线网络工具的开发,用于快速鉴定大豆基因模型和通用 DNA 序列中的 CRISPR/Cas9 靶标位点。本文所述的网络工具可以快速识别大量潜在的 CRISPR/Cas9 靶标位点,包括可以促进新突变检测的限制性内切酶位点。结合网络工具,设计了一个大豆密码子优化的 CRISPR/Cas9 平台,以将双链断裂引导至毛状根转化细胞中的靶向基因座。修饰后的 Cas9 酶被证明可以成功地使 2 种豆科植物(大豆和蒺藜苜蓿)体细胞中的靶基因发生突变。这些新工具可能有助于促进豆科植物和其他植物物种的靶向诱变。