CRISPR/Cas9与雌核发育技术整合快速产生F0代纯合突变斑马鱼

Yunpeng Fan , Guangjing Zhang , Kaiyue Zhao , Xiudan Yuan , Wen Fu , Jinhui Liu , Wenbin Liu , Liangyue Peng , Yamei Xiao
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引用次数: 1

摘要

基因编辑技术已广泛应用于基因功能表征。然而,这种方法往往是耗时获得纯合突变体。本文通过定时提前注射胚胎,显著提高了基因编辑效率,并结合紫外线灭活精子和热休克阻断第一次卵裂的技术,在第0代成功获得基因编辑的纯合子斑马鱼,而不是现有结果报道的第三代或更多代。由此可见,人工雌核发生的基因纯化对于更高效地制备鱼的基因编辑纯合子个体具有重要作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Rapidly generating homozygous mutate zebrafish in F0 generation by technical integration of CRISPR/Cas9 and gynogenesis

Gene editing technique has been widely applied for gene function characterization. However, such an approach is often time-consuming to obtain homozygous mutant. In this article, through timing the earlier injection of embryos, the gene editing efficiency is significantly improved, and together with the technique of the UV inactivated sperm and heat shock treatment for blocking the first cleavage, the gene-edited homozygous zebrafish are successfully obtained in F0 generation, rather than in the third or more generations as reported in the existing results. It is concluded that genetic purification of artificial gynogenesis can play critical role in more efficiently preparing the gene-edited homozygous individuals in fish.

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