Guo Lili, Dao Lema, Liu Bin, Wang Jingyu, Liu Zaixia, Ma Fengying, Morigen Bielige, Chang Chencheng, Bai Yinbatu, Guo Yaqiang, Shi Caixia, Cao Junwei, Zhang Wenguang
College of Life Science, Inner Mongolia Agricultural University, Hohhot, China.
Inner Mongolia Engineering Research Center of Genomic Big Data for Agriculture, Inner Mongolia Agricultural University, Hohhot, China.
Front Vet Sci. 2024 Jul 2;11:1359923. doi: 10.3389/fvets.2024.1359923. eCollection 2024.
The advancement of high-throughput, high-quality, flexible, and cost-effective genotyping platforms is crucial for the progress of dairy breeding in Bactrian camels. This study focuses on developing and evaluating a 1K functional liquid single nucleotide polymorphism (SNP) array specifically designed for milk performance in Bactrian camels.
We utilized RNA sequencing data from 125 lactating camels to identify and select 1,002 loci associated with milk production traits for inclusion in the SNP array. The array's performance was then assessed using 24 randomly selected camels. Additionally, the array was employed to genotype 398 individuals, which allowed for population validation to assess the polymorphism of SNP sites.
The SNP array demonstrated high overall SNP call rates (> 99%) and a remarkable 100% consistency in genotyping. Population validation results indicate that camels from six breeding areas in Northwest China share a similar genetic background regarding lactation functionality.
This study highlights the potential of the SNP array to accelerate the breeding process of lactating Bactrian camels and provides a robust technical foundation for improving lactation performance.
高通量、高质量、灵活且具有成本效益的基因分型平台的发展对于双峰驼乳业育种的进展至关重要。本研究专注于开发和评估一种专门为双峰驼产奶性能设计的1K功能性液体单核苷酸多态性(SNP)芯片。
我们利用125头泌乳骆驼的RNA测序数据来识别和选择1002个与产奶性状相关的位点,将其纳入SNP芯片。然后使用24头随机挑选的骆驼评估该芯片的性能。此外,该芯片用于对398个个体进行基因分型,从而进行群体验证以评估SNP位点的多态性。
该SNP芯片显示出较高的总体SNP检出率(>99%)以及基因分型中显著的100%一致性。群体验证结果表明,中国西北六个养殖地区的骆驼在泌乳功能方面具有相似的遗传背景。
本研究突出了SNP芯片在加速泌乳双峰驼育种过程中的潜力,并为提高泌乳性能提供了坚实的技术基础。