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Efficient transgenesis mediated by pigmentation rescue in zebrafish

机译:斑马鱼色素沉着修复介导的高效转基因

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摘要

The zebrafish represents a revolutionary tool in large-scale genetic and small-molecule screens for gene and drug discovery. Transgenic zebrafish are often utilized in these screens. Many transgenic fish lines are maintained in the heterozygous state due to the lethality associated with homozygosity; thus, their progeny must be sorted to ensure a population expressing the transgene of interest for use in screens. Sorting transgenic embryos under a fluorescence microscope is very labor-intensive and demands fine-tuned motor skills. Here we report an efficient transgenic method of utilizing pigmentation rescue of nacre mutant fish for accurate naked-eye identification of both mosaic founders and stable transgenic zebrafish. This was accomplished by co-injecting two constructs with the I-SceI meganuclease enzyme into pigmentless nacre embryos: I-SceI-mitfa: mitfa-I-SceI to rescue the pigmentation and I-SceI-zpromoter: gene-of- interest-I-SceI to express the gene of interest under a zebrafish promoter (zpromoter). Pigmentation rescue reliably predicted transgene integration. Compared with other transgenic techniques, our approach significantly increases the overall percentage of founders and facilitates accurate naked-eye identification of stable transgenic fish, greatly reducing laborious fluorescence microscope sorting and PCR genotyping. Thus, this approach is ideal for generating transgenic fish for large-scale screens.
机译:斑马鱼代表了大规模的遗传和小分子筛选中用于基因和药物发现的革命性工具。这些筛选中经常使用转基因斑马鱼。由于与纯合性相关的致死性,许多转基因鱼品系保持杂合状态。因此,必须对它们的后代进行分类,以确保表达目的转基因的种群可用于筛选。在荧光显微镜下对转基因胚胎进行分拣非常费力,并且需要微调的运动技能。在这里,我们报告了一种有效的转基因方法,该方法利用了珍珠质突变鱼的色素沉着抢救技术,可以对肉眼可见的镶嵌创始人和稳定的转基因斑马鱼进行准确的肉眼鉴定。这是通过将两种带有I-SceI巨核酸酶的构建体共同注射到无色素的珍珠母胚中来实现的:I-SceI-mitfa:mitfa-I-SceI以挽救色素沉着和I-SceI-zpromoter:目的基因-I -SceI在斑马鱼启动子(zpromoter)下表达目的基因。色素沉着抢救可靠地预测了转基因整合。与其他转基因技术相比,我们的方法显着提高了创建者的总体百分比,并有助于对稳定的转基因鱼进行准确的肉眼鉴定,从而大大减少了费力的荧光显微镜分选和PCR基因分型。因此,这种方法是为大规模筛选生产转基因鱼的理想选择。

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