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Generation of VEGF knock-in Cashmere goat via the CRISPR/Cas9 system

机译:通过CRISPR / CAS9系统生成VEGF敲鱼羊山羊

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Cashmere is a rare and specialised animal fibre, which grows on the outer skin of goats. Owing its low yield and soft, light, and warm properties, it has a high economic value. Here, we attempted to improve existing cashmere goat breeds by simultaneously increasing their fibre length and cashmere yield. We attempted this by knocking in the vascular endothelial growth factor (VEGF) at the fibroblast growth factor 5(FGF5) site using a gene editing technology and then studying its hair growth-promoting mechanisms. We show that a combination of RS-1 and NU7441 significantly improve the efficiency of CRISPR/Cas9-mediated, homologous-directed repair without affecting the embryo cleavage rate or the percentages of embryos at different stages. In addition, we obtained a cashmere goat, which integrated the VEGF gene at the FGF5 site, and the cashmere yield and fibre length of this gene-edited goat were improved. Through next-generation sequencing, we found that the up-regulation of VEGF and the down-regulation of FGF5 affected the cell cycle, proliferation, and vascular tone through the PI3K-AKT signalling pathway and at extracellular matrix-receptor interactions. Owing to this, the gene-edited cashmere goat showed impressive cashmere performance. Overall, in this study, we generated a gene-edited cashmere goat by integrating VEGF at the FGF5 site and provided an animal model for follow-up research on hair growth mechanisms.
机译:羊绒是一种珍稀且专门的动物纤维,其在山羊的外皮上生长。由于其低产量和柔软,轻盈和温暖的性能,它具有很高的经济价值。在这里,我们试图通过同时增加其纤维长度和羊绒产量来改善现有的羊绒山羊品种。我们使用基因编辑技术敲入成纤维细胞生长因子5(FGF5)位点的血管内皮生长因子(VEGF)进行了尝试,然后研究其毛发生长促进机制。我们表明RS-1和Nu7441的组合显着提高了CRISPR / CAS9介导,同源导向的修复的效率,而不会影响不同阶段的胚胎切割率或胚胎的百分比。此外,我们获得了羊绒山羊,其在FGF5位点上综合VEGF基因,这种基因编辑山羊的羊绒产量和纤维长度得到改善。通过下一代测序,我们发现VEGF的上调和FGF5的下调通过PI3K-AKT信号通路和细胞外基质受体相互作用影响细胞周期,增殖和血管间调。由于这一点,基因编辑的羊绒山羊表现出令人印象深刻的羊绒绩效。总体而言,在本研究中,我们通过在FGF5网站上整合VEGF来生成一个基因编辑的羊绒山羊,并为毛发生生长机制进行了后续研究的动物模型。

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