Sagawa Cintia H D, Thomson Geoffrey, Mermaz Benoit, Vernon Corina, Liu Siqi, Jacob Yannick, Irish Vivian F
Department of Molecular, Cellular and Developmental Biology, Yale University, New Haven, CT, USA.
Environmental Sciences Initiative, Advanced Science Research Center, The City University of New York, New York, NY, USA.
Plant Methods. 2024 Sep 28;20(1):148. doi: 10.1186/s13007-024-01274-4.
CRISPR/Cas9-mediated gene editing requires high efficiency to be routinely implemented, especially in species which are laborious and slow to transform. This requirement intensifies further when targeting multiple genes simultaneously, which is required for genetic screening or more complex genome engineering. Species in the Citrus genus fall into this category. Here we describe a series of experiments with the collective aim of improving multiplex gene editing in the Carrizo citrange cultivar using tRNA-based sgRNA arrays. We evaluate a range of promoters for their efficacy in such experiments and achieve significant improvements by optimizing the expression of both the Cas9 endonuclease and the sgRNA array. In the case of the former we find the UBQ10 or RPS5a promoters from Arabidopsis driving the zCas9i endonuclease variant useful for achieving high levels of editing. The choice of promoter expressing the sgRNA array also had a large impact on gene editing efficiency across multiple targets. In this respect Pol III promoters perform especially well, but we also demonstrate that the UBQ10 and ES8Z promoters from Arabidopsis are robust alternatives. Ultimately, this study provides a quantitative insight into CRISPR/Cas9 vector design that has practical application in the simultaneous editing of multiple genes in Citrus, and potentially other eudicot plant species.
CRISPR/Cas9介导的基因编辑要想常规实施就需要具备高效率,尤其是在那些转化操作费力且耗时的物种中。当同时靶向多个基因时,这种需求会进一步增强,而这是基因筛选或更复杂的基因组工程所必需的。柑橘属的物种就属于这一类。在此,我们描述了一系列实验,其共同目标是利用基于tRNA的sgRNA阵列提高卡里佐枳橙品种中的多重基因编辑效率。我们评估了一系列启动子在这类实验中的功效,并通过优化Cas9核酸内切酶和sgRNA阵列的表达取得了显著改进。对于前者,我们发现来自拟南芥的UBQ10或RPS5a启动子驱动zCas9i核酸内切酶变体有助于实现高水平的编辑。表达sgRNA阵列的启动子的选择对多个靶点的基因编辑效率也有很大影响。在这方面,Pol III启动子表现尤为出色,但我们也证明来自拟南芥的UBQ10和ES8Z启动子是可靠的替代方案。最终,本研究为CRISPR/Cas9载体设计提供了定量见解,这在柑橘以及可能其他双子叶植物物种的多个基因同时编辑中具有实际应用价值。