Hu R, Fan Z Y, Wang B Y, Deng S L, Zhang X S, Zhang J L, Han H B, Lian Z X
J Anim Sci. 2017 May;95(5):2019-2024. doi: 10.2527/jas.2017.1503.
Sheep are an important source of fiber production. Fibroblast growth factor 5 (FGF5) is a dominant inhibitor of length of the anagen phase of the hair cycle. Knockout or silencing of the gene results in a wooly coat in mice, donkeys, dogs, and rabbits. In sheep breeding, wool length is one of the most important wool quality traits. However, traditional breeding cannot accurately and efficiently mediate an advanced genotype into the sheep genome. In this study, we generated 3 knockout sheep via the 1-step clustered regularly interspaced short palindromic repeat (CRISPR)/Cas9 system. Sequencing analysis confirmed that mutations in the gene existed in all germ lines of 3 founders: besides the intact sequence, 3 kinds of deletions in the gene (including 5, 13, and 33 bp) were detected. The changes in the primary and senior structure of the FGF5 protein due to the 3 deletions in founders suggested that the FGF5 protein was dysfunctional. In addition, the expression level of intact mRNA in heterozygous individuals decreased compared with the wild types ( < 0.01). Functionally, we discovered that wool length in founders was significantly longer than in wild types ( < 0.05). Collectively, the knockout sheep with the longer wool length phenotype will provide an efficient way for fast genetic improvement of sheep breeding and promote the development of wool industry.
绵羊是纤维生产的重要来源。成纤维细胞生长因子5(FGF5)是毛发生长周期生长期长度的主要抑制剂。该基因的敲除或沉默会导致小鼠、驴、狗和兔子出现羊毛状被毛。在绵羊育种中,羊毛长度是最重要的羊毛品质性状之一。然而,传统育种无法准确有效地将先进基因型导入绵羊基因组。在本研究中,我们通过一步法成簇规律间隔短回文重复序列(CRISPR)/Cas9系统产生了3只基因敲除绵羊。测序分析证实,3只奠基羊的所有生殖系中均存在该基因的突变:除完整序列外,还检测到该基因的3种缺失(包括5、13和33 bp)。奠基羊中3种缺失导致FGF5蛋白一级和高级结构发生变化,提示FGF5蛋白功能失调。此外,杂合个体中完整mRNA的表达水平与野生型相比有所下降(<0.01)。在功能上,我们发现奠基羊的羊毛长度明显长于野生型(<0.05)。总的来说,具有更长羊毛长度表型的基因敲除绵羊将为绵羊育种的快速遗传改良提供一种有效方法,并促进羊毛产业的发展。