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Disruption of FGF5 in Cashmere Goats Using CRISPR/Cas9 Results in More Secondary Hair Follicles and Longer Fibers

机译:使用CRISPR / Cas9破坏绒山羊中的FGF5导致更多次要毛囊和更长的纤维

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摘要

Precision genetic engineering accelerates the genetic improvement of livestock for agriculture and biomedicine. We have recently reported our success in producing gene-modified goats using the CRISPR/Cas9 system through microinjection of Cas9 mRNA and sgRNAs targeting the MSTN and FGF5 genes in goat embryos. By investigating the influence of gene modification on the phenotypes of Cas9-mediated goats, we herein demonstrate that the utility of this approach involving the disruption of FGF5 results in increased number of second hair follicles and enhanced fiber length in Cas9-mediated goats, suggesting more cashmere will be produced. The effects of genome modifications were characterized using H&E and immunohistochemistry staining, quantitative PCR, and western blotting techniques. These results indicated that the gene modifications induced by the disruption of FGF5 had occurred at the morphological and genetic levels. We further show that the knockout alleles were likely capable of germline transmission, which is essential for goat population expansion. These results provide sufficient evidences of the merit of using the CRISPR/Cas9 approach for the generation of gene-modified goats displaying the corresponding mutant phenotypes.
机译:精密基因工程加快了农业和生物医学家畜的遗传改良。我们最近报道了我们通过使用CRISPR / Cas9系统通过在山羊胚胎中微注射靶向MSTN和FGF5基因的Cas9 mRNA和sgRNA来成功生产基因修饰的山羊。通过研究基因修饰对Cas9介导的山羊表型的影响,我们在本文中证明,这种涉及FGF5破坏的方法的实用性导致Cas9介导的山羊的第二毛囊数量增加和纤维长度增加,提示更多将生产羊绒。使用H&E和免疫组织化学染色,定量PCR和Western印迹技术来表征基因组修饰的作用。这些结果表明,由FGF5破坏引起的基因修饰已经发生在形态和遗传水平上。我们进一步表明,敲除等位基因可能具有种系传递能力,这对于山羊种群的扩展至关重要。这些结果提供了充分的证据证明使用CRISPR / Cas9方法可产生具有相应突变表型的基因修饰山羊。

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