原生质体
生物
绿色荧光蛋白
基因
亚细胞定位
老茧
基因表达
报告基因
基因组编辑
转染
基因组
表达式向量
细胞生物学
分子生物学
遗传学
重组DNA
作者
Wenhui Yang,Jiaqin Ren,Wanrong Liu,Dan Liu,Kai-Dong Xie,Fei Zhang,Pengwei Wang,Wen‐Wu Guo,Xiao‐Meng Wu
标识
DOI:10.1016/j.hpj.2022.06.006
摘要
Protoplast has been widely used in biotechnologies to circumvent the breeding obstacles in citrus, including long juvenility, polyembryony, and male/female sterility. The protoplast-based transient gene expression system is a powerful tool for gene functional characterization and CRISPR/Cas9 genome editing in higher plants, but it has not been widely used in citrus. In this study, the polyethylene glycol (PEG)-mediated method was optimized for citrus callus protoplast transfection, with an improved transfection efficiency of 68.4%. Consequently, the efficiency of protein subcellular localization assay was increased to 65.8%, through transient expression of the target gene in protoplasts that stably express the fluorescent organelle marker protein. The gene editing frequencies in citrus callus protoplasts reached 14.2% after transient expression of CRISPR/Cas9 constructs. We demonstrated that the intronic polycistronic tRNA-gRNA (inPTG) genome editing construct was functional in both the protoplast transient expression system and epicotyl stable transformation system in citrus. With this optimized protoplast transient expression system, we improved the efficiency of protein subcellular localization assay and developed the genome editing system in callus protoplasts, which provides an approach for prompt test of CRISPR vectors.
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