首页> 外文期刊>Aquaculture >CRISPR/Cas9-mediated myostatin disruption enhances muscle mass in the olive flounder Paralichthys olivaceus
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CRISPR/Cas9-mediated myostatin disruption enhances muscle mass in the olive flounder Paralichthys olivaceus

机译:CRISPR / CAS9介导的肌肉抑制素破坏增强了橄榄野生鼠Paralichthys Olivaceus的肌肉肿块

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摘要

Myostatin (MSTN), a negative regulator of skeletal muscle development, is the major gene of interest for improving animal breeding productivity, including for aquaculture. We introduced a CRISPR/Cas9 system to disrupt Paralichthys olivaceus MSTN (PoMSTN) using microinjection. Cas9 mRNA and sgRNAs targeting the first exon of the PoMSTN gene were co-injected into embryos of P. olivaceus. On-target mutations on the PoMSTN locus were generated in somatic tissues with 75.6% efficiency, and founders harboring germline mutations were produced in the F0 generation. In the F1 generation, restriction fragment length polymorphism analysis was applied to select biallelic mutants, and heterozygous biallelic mutants with PoMSTN disruption were obtained. PoMSTN-disrupted P. olivaceus exhibited greater body thickness and increased condition factor, indicating the enhancement of muscle mass with muscle hyperplasia. Expression of PoMSTN mRNA and protein was significantly reduced in the muscle of PoMSTN-disrupted P. olivaceus, and the mRNA expression of major myogenic regulatory factors (myogenin, MyoD, and Myf5) was differentially affected in PoMSTN-disrupted mutants. These results suggest that the establishment of a CRISPR/Cas9 system in P. olivaceus provides powerful tools for related genetic studies and breeding.
机译:Myostatin(MSTN)是一种骨骼肌发育的负调节因子,是改善动物育种生产率的主要基因,包括水产养殖。我们介绍了一种CRISPR / CAS9系统,用于使用显微注射来破坏Paralichthys Olivaceus Mstn(Pomstn)。靶向POMSTN基因的第一个外显子的Cas9 mRNA和Sgrnas被共注入P. Olivaceus的胚胎。椎间盘基因座上的靶向突变在体细胞组织中产生,效率为75.6%,在F0代中产生含有种系突变的创始者。在F1的生成中,施用限制性片段长度多态性分析来选择双挠曲突变体,并获得杂合的双曲突突变体。 Pomstn破坏的P. Olivaceus表现出更大的体厚度和增加的条件因子,表明具有肌肉增生的肌肉肿块的增强。 POMSTN破碎的P. Olivaceus的肌肉中POMSTN mRNA和蛋白的表达显着降低,以及主要源性调节因子(Myogenin,MyF5)的mRNA表达在椎间裂解突变体中差异地影响。这些结果表明,在P. Olivaceus中建立了CRISPR / CAS9系统为相关的遗传学研究和育种提供了强大的工具。

著录项

  • 来源
    《Aquaculture》 |2019年第2019期|共12页
  • 作者单位

    Natl Inst Fisheries Sci Biotechnol Res Div 216 Gijanghaean Ro Busan 46083 South Korea;

    Natl Inst Fisheries Sci Biotechnol Res Div 216 Gijanghaean Ro Busan 46083 South Korea;

    Natl Inst Fisheries Sci Biotechnol Res Div 216 Gijanghaean Ro Busan 46083 South Korea;

    Natl Inst Fisheries Sci Genet &

    Breeding Res Ctr Geoje 53334 South Korea;

    Natl Inst Fisheries Sci Biotechnol Res Div 216 Gijanghaean Ro Busan 46083 South Korea;

    Natl Inst Fisheries Sci Biotechnol Res Div 216 Gijanghaean Ro Busan 46083 South Korea;

    Natl Inst Fisheries Sci Genet &

    Breeding Res Ctr Geoje 53334 South Korea;

    Natl Inst Fisheries Sci Genet &

    Breeding Res Ctr Geoje 53334 South Korea;

    Hanbat Natl Univ Div Appl Chem &

    Biotechnol Daejeon 34158 South Korea;

    Natl Inst Fisheries Sci Biotechnol Res Div 216 Gijanghaean Ro Busan 46083 South Korea;

    Natl Inst Fisheries Sci Biotechnol Res Div 216 Gijanghaean Ro Busan 46083 South Korea;

    Natl Inst Fisheries Sci Biotechnol Res Div 216 Gijanghaean Ro Busan 46083 South Korea;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 水产、渔业;
  • 关键词

    Paralichthys olivaceus; Microinjection; Genome editing; CRISPR/Cas9; Myostatin; Muscle mass;

    机译:paralichthys olivaceus;微注调;基因组编辑;Crispr / cas9;myostatin;肌肉质量;

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