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Trio-Based Deep Sequencing Reveals a Low Incidence of Off-Target Mutations in the Offspring of Genetically Edited Goats

机译:基于三重奏的深度测序揭示了转基因山羊后代中脱靶突变的低发生率

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摘要

Unintended off-target mutations induced by CRISPR/Cas9 nucleases may result in unwanted consequences, which will impede the efficient applicability of this technology for genetic improvement. We have recently edited the goat genome through CRISPR/Cas9 by targeting MSTN and FGF5, which increased muscle fiber diameter and hair fiber length, respectively. Using family trio-based sequencing that allow better discrimination of variant origins, we herein generated offspring from edited goats, and sequenced the members of four family trios (gene-edited goats and their offspring) to an average of ∼36.8× coverage. This data was to systematically examined for mutation profiles using a stringent pipeline that comprehensively analyzed the sequence data for de novo single nucleotide variants, indels, and structural variants from the genome. Our results revealed that the incidence of de novo mutations in the offspring was equivalent to normal populations. We further conducted RNA sequencing using muscle and skin tissues from the offspring and control animals, the differentially expressed genes (DEGs) were related to muscle fiber development in muscles, skin development, and immune responses in skin tissues. Furthermore, in contrast to recently reports of Cas9 triggered p53 expression alterations in cultured cells, we provide primary evidence to show that Cas9-mediated genetic modification does not induce apparent p53 expression changes in animal tissues. This work provides adequate molecular evidence to support the reliability of conducting Cas9-mediated genome editing in large animal models for biomedicine and agriculture.
机译:CRISPR / Cas9核酸酶诱导的意外脱靶突变可能会导致不良后果,这将阻碍该技术对遗传改良的有效应用。我们最近通过靶向MSTN和FGF5通过CRISPR / Cas9编辑了山羊基因组,这分别增加了肌纤维直径和毛发长度。我们使用基于家庭三重奏的测序方法,可以更好地区分变异起源,在此我们从编辑过的山羊中产生了后代,并对四个家庭三重奏(基因编辑过的山羊及其后代)的成员进行了平均约36.8倍的覆盖率。使用严格的管线系统地检查突变数据,以全面分析基因组中从头开始的单核苷酸变异,插入缺失和结构变异的序列数据。我们的结果表明,后代中从头突变的发生率与正常人群相当。我们进一步使用后代和对照动物的肌肉和皮肤组织进行了RNA测序,差异表达基因(DEG)与肌肉中的肌肉纤维发育,皮肤发育以及皮肤组织中的免疫反应有关。此外,与最近报道的Cas9触发培养细胞中p53表达改变相反,我们提供了主要证据表明Cas9介导的基因修饰不会在动物组织中诱导明显的p53表达改变。这项工作提供了足够的分子证据来支持在大型生物医学和农业动物模型中进行Cas9介导的基因组编辑的可靠性。

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