Citrus Research and Education Center, Department of Microbiology and Cell Science, Institute of Food and Agricultural Sciences (IFAS), University of Florida, Lake Alfred, FL, USA.
Plant Mol Biol. 2020 Oct;104(3):297-307. doi: 10.1007/s11103-020-01043-6. Epub 2020 Aug 3.
We have developed multiplex genome editing toolkits for citrus that significantly improve citrus genome editing efficacy. CRISPR/Cas systems have been engineered for genome editing in many organisms, including plants. However, the gene editing efficiency in citrus via CRISPR technology remains too low to be implemented for genetic improvement in practice. Moreover, it is very difficult to obtain homozygous or biallelic knockout mutants in citrus. Here, we have developed multiplex genome editing toolkits for citrus including PEG-mediated protoplast transformation, a GFP reporter system that allows the rapid assessment of CRISPR constructs, citrus U6 promoters with improved efficacy, and tRNA-mediated or Csy4-mediated multiplex genome editing. Using the toolkits, we successfully conducted genome modification of embryogenic protoplast cells and epicotyl tissues. We have achieved a biallelic mutation rate of 44.4% and a homozygous mutation rate of 11.1%, representing a significant improvement in citrus genome editing efficacy. In addition, our study lays the foundation for nontransgenic genome editing of citrus.
我们开发了用于柑橘的多重基因组编辑工具包,显著提高了柑橘基因组编辑的效率。CRISPR/Cas 系统已被用于许多生物体的基因组编辑,包括植物。然而,通过 CRISPR 技术在柑橘中的基因编辑效率仍然太低,无法在实践中进行遗传改良。此外,在柑橘中获得纯合或双等位基因敲除突变体非常困难。在这里,我们开发了用于柑橘的多重基因组编辑工具包,包括 PEG 介导的原生质体转化、GFP 报告系统,可快速评估 CRISPR 构建体、柑橘 U6 启动子具有更高的功效,以及 tRNA 介导或 Csy4 介导的多重基因组编辑。使用这些工具包,我们成功地对胚胎发生原生质体细胞和上胚轴组织进行了基因组修饰。我们实现了 44.4%的双等位基因突变率和 11.1%的纯合基因突变率,显著提高了柑橘的基因组编辑效率。此外,我们的研究为柑橘的非转基因基因组编辑奠定了基础。