Liu Qing, Shi Liangyu, Zhang Pu, Yu Bo, Liu Chenhui, Xiang Min, Li Shuilian, Liu Lei, Cheng Lei, Chen Hongbo
Laboratory of Genetic Breeding, Reproduction and Precision Livestock Farming & Hubei Provincial Center of Technology Innovation for Domestic Animal Breeding, School of Animal Science and Nutritional Engineering, Wuhan Polytechnic University, Wuhan 430023, China.
Institute of Animal Science and Veterinary Medicine, Wuhan Academy of Agricultural Sciences, Wuhan 430208, China.
Animals (Basel). 2025 May 7;15(9):1346. doi: 10.3390/ani15091346.
The availability of genome sequences and single-nucleotide polymorphism (SNP) chips allows us to investigate the various genomic characteristics of species by exploring genetic diversity to aid genetic selection. The SNP chip is a cost-effective genotyping platform essential for molecular breeding of livestock. In this study, we developed a liquid SNP capture chip suitable for five Hubei (China) indigenous beef cattle breeds based on whole-genome sequencing datasets. The panel consisted of 42,686 SNPs (~40 K). These SNPs were evenly distributed on each bovine chromosome, with the majority of SNPs having minor allele frequencies >0.05 and located within intergenic regions. The performance evaluation of this SNP chip panel was proceeded by genotyping 200 individuals, revealing that this panel has a high SNP call rate of 99.48%. The SNP chip panel was further used to examine the population structure of a beef cattle population with 205 individuals and demonstrated the ability to differentiate between foreign and indigenous cattle breeds. The SNP chip was also used to determine the runs of homozygosity (ROH) within a local Hubei beef cattle population of 195 individuals. We identified 2547 ROH and several genes associated with economically important traits in the study population. Our findings demonstrate that this chip not only contributes to the understanding of the genetic characteristics of local beef cattle breeds but also provides valuable genetic information for future breeding programs, thereby improving their production efficiency and economic value.
基因组序列和单核苷酸多态性(SNP)芯片的可用性使我们能够通过探索遗传多样性来研究物种的各种基因组特征,以辅助遗传选择。SNP芯片是一种经济高效的基因分型平台,对家畜分子育种至关重要。在本研究中,我们基于全基因组测序数据集开发了一种适用于五个中国湖北本土肉牛品种的液体SNP捕获芯片。该芯片组由42,686个SNP(约40K)组成。这些SNP均匀分布在每条牛染色体上,大多数SNP的次要等位基因频率>0.05,且位于基因间区域。通过对200个个体进行基因分型对该SNP芯片组进行性能评估,结果显示该芯片组的SNP检出率高达99.48%。该SNP芯片组进一步用于检测一个由205个个体组成的肉牛群体的种群结构,并证明了其区分外来和本土牛品种的能力。该SNP芯片还用于确定一个由195个个体组成的湖北本地肉牛群体中的纯合子连续片段(ROH)。我们在研究群体中鉴定出2547个ROH以及几个与经济重要性状相关的基因。我们的研究结果表明,该芯片不仅有助于了解本地肉牛品种的遗传特征,还为未来的育种计划提供了有价值的遗传信息,从而提高其生产效率和经济价值。