Department of Biotechnology, Graduate School of Engineering, Osaka University, Suita, Osaka, Japan.
Biotechnology Global Human Resource Development Program, Division of Advanced Science and Biotechnology, Department of Biotechnology, Graduate School of Engineering, Osaka University, Suita, Osaka, Japan.
Sci Rep. 2022 Feb 15;12(1):2497. doi: 10.1038/s41598-022-06526-8.
In the crustacean Daphnia magna, studying homology-directed repair (HDR) is important to understand genome maintenance during parthenogenesis, effects of environmental toxicants on the genome, and improvement of HDR-mediated genome editing. Here we developed a transgenic D. magna that expresses green fluorescence protein (GFP) upon HDR occurrence. We utilized the previously established reporter plasmid named DR-GFP that has a mutated eGFP gene (SceGFP) and the tandemly located donor GFP gene fragment (iGFP). Upon double-strand break (DSB) introduction on SceGFP, the iGFP gene fragment acts as the HDR template and restores functional eGFP expression. We customized this reporter plasmid to allow bicistronic expression of the mCherry gene under the control of the D. magna EF1α-1 promoter/enhancer. By CRISPR/Cas-mediated knock-in of this plasmid via non-homologous joining, we generated the transgenic D. magna that expresses mCherry ubiquitously, suggesting that the DR-GFP reporter gene is expressed in most cells. Introducing DSB on the SceGFP resulted in eGFP expression and this HDR event could be detected by fluorescence, genomic PCR, and quantitative reverse-transcription PCR, suggesting this line could be used for evaluating HDR. The established reporter line might expand our understanding of the HDR mechanism and also improve the HDR-based gene-editing system in this species.
在甲壳纲动物大型溞(Daphnia magna)中,研究同源定向修复(HDR)对于理解孤雌生殖过程中的基因组维护、环境毒物对基因组的影响以及提高 HDR 介导的基因组编辑效率都非常重要。在这里,我们开发了一种能够在 HDR 发生时表达绿色荧光蛋白(GFP)的转基因大型溞。我们利用了先前建立的报告质粒 DR-GFP,该质粒具有突变的 eGFP 基因(SceGFP)和串联排列的供体 GFP 基因片段(iGFP)。在 SceGFP 上引入双链断裂(DSB)后,iGFP 基因片段作为 HDR 模板,恢复功能性 eGFP 的表达。我们定制了这个报告质粒,使其能够在 D. magna EF1α-1 启动子/增强子的控制下,双顺反子表达 mCherry 基因。通过 CRISPR/Cas 介导的非同源连接将该质粒敲入,我们生成了普遍表达 mCherry 的转基因大型溞,这表明 DR-GFP 报告基因在大多数细胞中都有表达。在 SceGFP 上引入 DSB 会导致 GFP 的表达,并且可以通过荧光、基因组 PCR 和定量逆转录 PCR 检测到这种 HDR 事件,这表明该系可用于评估 HDR。该建立的报告系可能会扩展我们对 HDR 机制的理解,并提高该物种基于 HDR 的基因编辑系统。