Zhou Wenjun, Wan Yongjie, Guo Rihong, Deng Mingtian, Deng Kaiping, Wang Zhen, Zhang Yanli, Wang Feng
Jiangsu Livestock Embryo Engineering Laboratory, Nanjing Agricultural University, Nanjing, Jiangsu, PR, China.
PLoS One. 2017 Oct 10;12(10):e0186056. doi: 10.1371/journal.pone.0186056. eCollection 2017.
Goat's milk, considered a substitute for cow's milk, has a high nutritional value. However, goat's milk contains various allergens, predominantly β-lactoglobulin (BLG). In this study, we employed the CRISPR/Cas9 system to target the BLG locus in goat fibroblasts for sgRNA optimization and generate BLG knock-out goats through co-injection of Cas9 mRNA and small guide RNAs (sgRNAs) into goat embryos at the one-cell stage. We firstly tested sgRNA editing efficiencies in goat fibroblast cells, and approximately 8.00%-9.09% of the cells were modified in single sgRNA-guided targeting experiment. Among the kids, the genome-targeting efficiencies of single sgRNA were 12.5% (10 ng/μL sg1) and 0% (10 ng/μL sg2) and efficiencies of dual sgRNAs were 25.0% (25 ng/μL sg2+sg3 group) and 28.6% (50 ng/μL sg2+sg3 group). Relative expression of BLG in BLG knock-out goat mammary glands significantly (p < 0.01) decreased as well as other milk protein coding genes, such as CSN1S1, CSN1S2, CSN2, CSN3 and LALBA (p < 0.05). As expected, BLG protein had been abolished in the milk of the BLG knock-out goat. In addition, most of the targeted kids were chimeric (3/4), and their various body tissues were edited simultaneously. Our study thus provides a basis for optimizing the quality of goat milk, which can be applied to biomedical and agricultural research.
山羊奶被认为是牛奶的替代品,具有很高的营养价值。然而,山羊奶含有多种过敏原,主要是β-乳球蛋白(BLG)。在本研究中,我们利用CRISPR/Cas9系统靶向山羊成纤维细胞中的BLG基因座进行sgRNA优化,并通过在单细胞阶段将Cas9 mRNA和小向导RNA(sgRNAs)共注射到山羊胚胎中,生成BLG基因敲除山羊。我们首先在山羊成纤维细胞中测试了sgRNA编辑效率,在单sgRNA引导的靶向实验中,约8.00%-9.09%的细胞被修饰。在这些幼崽中,单sgRNA的基因组靶向效率分别为12.5%(10 ng/μL sg1)和0%(10 ng/μL sg2),双sgRNAs的效率分别为25.0%(25 ng/μL sg2+sg3组)和28.6%(50 ng/μL sg2+sg3组)。BLG基因敲除山羊乳腺中BLG的相对表达显著降低(p<0.01),其他乳蛋白编码基因如CSN1S1、CSN1S2、CSN2、CSN3和LALBA也是如此(p<0.05)。正如预期的那样,BLG基因敲除山羊的乳汁中BLG蛋白已被消除。此外,大多数靶向幼崽是嵌合体(3/4),它们的各种身体组织同时被编辑。因此,我们的研究为优化山羊奶质量提供了依据,可应用于生物医学和农业研究。