Edea Z, Hong J-K, Jung J-H, Kim D-W, Kim Y-M, Kim E-S, Shin S S, Jung Y C, Kim K-S
Department of Animal Science, Chungbuk National University, 28644, Cheongju, Korea.
Swine Science Division, National Institute of Animal Science, Rural Development Administration, Chunan, 31000, Korea.
Anim Genet. 2017 Aug;48(4):473-477. doi: 10.1111/age.12559. Epub 2017 May 16.
The development of high throughput genotyping techniques has facilitated the identification of selection signatures of pigs. The detection of genomic selection signals in a population subjected to differential selection pressures may provide insights into the genes associated with economically and biologically important traits. To identify genomic regions under selection, we genotyped 488 Duroc (D) pigs and 155 D × Korean native pigs (DKNPs) using the Porcine SNP70K BeadChip. By applying the F and extended haplotype homozygosity (EHH-Rsb) methods, we detected genes under directional selection associated with growth/stature (DOCK7, PLCB4, HS2ST1, FBP2 and TG), carcass and meat quality (TG, COL14A1, FBXO5, NR3C1, SNX7, ARHGAP26 and DPYD), number of teats (LOC100153159 and LRRC1), pigmentation (MME) and ear morphology (SOX5), which are all mostly near or at fixation. These results could be a basis for investigating the underlying mutations associated with observed phenotypic variation. Validation using genome-wide association analysis would also facilitate the inclusion of some of these markers in genetic evaluation programs.
高通量基因分型技术的发展促进了猪选择信号的识别。在受到不同选择压力的群体中检测基因组选择信号,可能有助于深入了解与经济和生物学重要性状相关的基因。为了识别受选择的基因组区域,我们使用猪70K SNP芯片对488头杜洛克猪(D)和155头杜洛克×韩国本地猪(DKNP)进行了基因分型。通过应用F和扩展单倍型纯合性(EHH-Rsb)方法,我们检测到了与生长/体型(DOCK7、PLCB4、HS2ST1、FBP2和TG)、胴体和肉质(TG、COL14A1、FBXO5、NR3C1、SNX7、ARHGAP26和DPYD)、乳头数量(LOC100153159和LRRC1)、色素沉着(MME)和耳部形态(SOX5)相关的定向选择下的基因,这些基因大多接近或处于固定状态。这些结果可为研究与观察到的表型变异相关的潜在突变提供基础。使用全基因组关联分析进行验证也将有助于将其中一些标记纳入遗传评估程序。