Liu Gang, Sun Fei Zhou, Zhu Fang Xian, Feng Hai Yong, Han Xu
National Animal Husbandry Service, Beijing 100193, China.
Yi Chuan. 2019 Apr 20;41(4):304-317. doi: 10.16288/j.yczz.18-287.
With the rapid development of high-throughput SNP array and significant reduction of sequencing cost, the techniques of genome-resequencing and SNP chip arrays are widely applied in livestock genomic studies. Long runs of homozygosity (ROH) arose when identical haplotypes were inherited from each parent and thus a long tract of genotypes is homozygous. Nowadays, cumulative studies reported that ROH has progressively served as one of the important indexes to estimate the degree of inbreeding and genetic structure of livestock populations. However, the evaluating criteria of ROH in livestock is still inadequate. In this review, we introduce the history, theory and identification methods of ROH analysis. Meanwhile, we also systematically overview the applications and perspectives of ROH in population genetic structure analysis, genome functional assay, quality investigation and dynamic monitoring of livestock genetic resources.
随着高通量单核苷酸多态性(SNP)芯片技术的迅速发展以及测序成本的大幅降低,全基因组重测序技术和SNP芯片技术在畜禽基因组研究中得到了广泛应用。当从双亲继承相同的单倍型时,就会出现长纯合片段(ROH),从而导致一长段基因型是纯合的。如今,越来越多的研究表明,ROH已逐渐成为评估畜禽群体近亲繁殖程度和遗传结构的重要指标之一。然而,目前畜禽中ROH的评估标准仍不完善。在这篇综述中,我们介绍了ROH分析的历史、理论和鉴定方法。同时,我们还系统地概述了ROH在群体遗传结构分析、基因组功能测定、畜禽遗传资源质量调查和动态监测中的应用及前景。