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Genome-Wide Homozygosity Patterns and Evidence for Selection in a Set of European and Near Eastern Horse Breeds

机译:一套欧洲和东部马养殖中的基因组 - 宽的纯合格模式和依据

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摘要

Intensive artificial and natural selection have shaped substantial variation among European horse breeds. Whereas most equine selection signature studies employ divergent genetic population structures in order to derive specific inter-breed targets of selection, we screened a total of 1476 horses originating from 12 breeds for the loss of genetic diversity by runs of homozygosity (ROH) utilizing a 670,000 single nucleotide polymorphism (SNP) genotyping array. Overlapping homozygous regions (ROH islands) indicating signatures of selection were identified by breed and similarities/dissimilarities between populations were evaluated. In the entire dataset, 180 ROH islands were identified, whilst 100 islands were breed specific, all other overlapped in 36 genomic regions with at least one ROH island of another breed. Furthermore, two ROH hot spots were determined at horse chromosome 3 (ECA3) and ECA11. Besides the confirmation of previously documented target genes involved in selection for coat color (MC1R, STX17, ASIP), body size (LCORL/NCAPG, ZFAT, LASP1, HMGA2), racing ability (PPARGC1A), behavioral traits (GRIN2B, NTM/OPCML) and gait patterns (DMRT3), several putative target genes related to embryonic morphogenesis (HOXB), energy metabolism (IGFBP-1, IGFBP-3), hair follicle morphogenesis (KRT25, KRT27, INTU) and autophagy (RALB) were highlighted. Furthermore, genes were pinpointed which might be involved in environmental adaptation of specific habitats (UVSSA, STXBP4, COX11, HLF, MMD).
机译:密集的人工和自然选择塑造了欧洲的马品种之间的巨大差异。尽管大多数马选择签名的研究采用不同的遗传人口结构,以选择衍生出跨品种的目标,我们一共有1476匹原产放映来自12个品种的遗传多样性的纯合的运行利用67万的损失(ROH)单核苷酸多态性(SNP)基因分型阵列。重叠区域纯合的(ROH岛)表示选择的签名被品种和相似性鉴定/群之间不同点进行评价。在整个数据集,180个ROH岛屿进行鉴定,而100个岛屿是品种特异性的,在36个的基因组区域的所有其他重叠与至少一个ROH岛另一品种。此外,两个ROH热点在马3号染色体(ECA3)和ECA11进行了测定。除了参与选择的毛色(MC1R,STX17,ASIP),车身尺寸(LCORL / NCAPG,ZFAT,LASP1,HMGA2),赛车的能力(PPARGC1A),行为特征(GRIN2B,NTM / OPCML以前记录的靶基因的确认)和步态模式(DMRT3),有关胚胎形态发生(HOXB),能量代谢(IGFBP-1,IGFBP-3),毛囊形态(KRT25,KRT27,INTU)和自噬(RALB)几个推定的靶基因得到强调。此外,基因精确定位可能在特定生境(UVSSA,STXBP4,COX11,HLF,MMD)的环境适应性有关。

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