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Disruption of the sheep BMPR-IB gene by CRISPR/Cas9 in in vitro-produced embryos

机译:在体外产生的胚胎中通过CRISPR / CAS9破坏绵羊BMPR-IB基因的破坏

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摘要

BMPR-IB (also known as FecB) is a key candidate gene for the genetic control of sheep reproductive performance. Loss-of-function mutations in the sheep BMPR-IB gene lead to an increase in ovulation rate and consequently larger litter size. However, the BMPR-IB gene has been identified in only a few sheep breeds. To improve sheep reproduction through modification of the BMPR-IB gene, we designed an sgRNA to target the sheep BMPR-IB gene by using the CRISPR/Cas9 system. First, we performed gene editing by injecting Cas9/sgRNA into the cytoplasm of one-cell fertilized eggs. A total of 88 embryos were assayed by T7EI digestion and Sanger sequencing. The results reported that the efficiency of gene modification was 37.5% (33/88) and increased with the developmental stage of embryo from the 2-cell stage to the blastocyst stage. Of the 33 gene editing embryos, 12 (36%, 12/33) were homozygous and 21 (64%, 21/33) were heterozygous. Moreover, sequence analysis of the PCR products from the positive embryos revealed that there were more than 10 modification forms that resulted in frame shift and truncated proteins. Further analysis by cloning and sequencing of each individual embryo showed a high level of mosaicism. In addition, off-target event analysis revealed that none of the off target mutations was introduced into the embryos. Our results indicated that the Cas9/sgRNA system is a simple and efficient tool that may potentially be used in the genetic modification of the sheep BMPR-IB gene in vivo. (C) 2016 Elsevier Inc. All rights reserved.
机译:BMPR-IB(也称为FecB)是绵羊繁殖性能遗传控制的关键候选基因。绵羊BMPR-IB基因的功能缺失突变导致排卵率增加,从而导致产仔数增加。然而,BMPR-IB基因仅在少数绵羊品种中被发现。为了通过修饰BMPR-IB基因来提高绵羊的繁殖能力,我们利用CRISPR/Cas9系统设计了一种针对绵羊BMPR-IB基因的sgRNA。首先,我们将Cas9/sgRNA注入单细胞受精卵的细胞质进行基因编辑。共有88个胚胎通过T7EI消化和Sanger测序进行检测。结果表明,基因修饰效率为37.5%(33/88),并且随着胚胎发育阶段从2细胞期到胚泡期的增加而增加。在33个基因编辑胚胎中,12个(36%,12/33)为纯合胚胎,21个(64%,21/33)为杂合胚胎。此外,对阳性胚胎PCR产物的序列分析显示,有10多种修饰形式导致了移码和截短的蛋白质。通过克隆和测序对每个胚胎进行进一步分析,结果显示嵌合体水平较高。此外,非靶点事件分析显示,没有任何非靶点突变被引入胚胎。我们的结果表明,Cas9/sgRNA系统是一种简单有效的工具,可能用于绵羊BMPR-IB基因的体内遗传修饰。(C) 2016爱思唯尔公司版权所有。

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