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A QTL for Number of Teats Shows Breed Specific Effects on Number of Vertebrae in Pigs: Bridging the Gap Between Molecular and Quantitative Genetics

机译:乳头数量的QTL显示了猪对椎骨数量的特定育种效应:弥合分子遗传学和定量遗传学之间的差距

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摘要

Modern breeding schemes for livestock species accumulate a large amount of genotype and phenotype data which can be used for genome-wide association studies (GWAS). Many chromosomal regions harboring effects on quantitative traits have been reported from these studies, but the underlying causative mutations remain mostly undetected. In this study, we combine large genotype and phenotype data available from a commercial pig breeding scheme for three different breeds (Duroc, Landrace, and Large White) to pinpoint functional variation for a region on porcine chromosome 7 affecting number of teats (NTE). Our results show that refining trait definition by counting number of vertebrae (NVE) and ribs (RIB) helps to reduce noise from other genetic variation and increases heritability from 0.28 up to 0.62 NVE and 0.78 RIB in Duroc. However, in Landrace, the effect of the same QTL on NTE mainly affects NVE and not RIB, which is reflected in reduced heritability for RIB (0.24) compared to NVE (0.59). Further, differences in allele frequencies and accuracy of rib counting influence genetic parameters. Correction for the top SNP does not detect any other QTL effect on NTE, NVE, or RIB in Landrace or Duroc. At the molecular level, haplotypes derived from 660K SNP data detects a core haplotype of seven SNPs in Duroc. Sequence analysis of 16 Duroc animals shows that two functional mutations of the Vertnin (VRTN) gene known to increase number of thoracic vertebrae (ribs) reside on this haplotype. In Landrace, the linkage disequilibrium (LD) extends over a region of more than 3 Mb also containing both VRTN mutations. Here, other modifying loci are expected to cause the breed-specific effect. Additional variants found on the wildtype haplotype surrounding the VRTN region in all sequenced Landrace animals point toward breed specific differences which are expected to be present also across the whole genome. This Landrace specific haplotype contains two missense mutations in the ABCD4 gene, one of which is expected to have a negative effect on the protein function. Together, the integration of largescale genotype, phenotype and sequence data shows exemplarily how population parameters are influenced by underlying variation at the molecular level.
机译:现代畜牧业育种计划积累了大量的基因型和表型数据,可用于全基因组关联研究(GWAS)。这些研究已经报道了许多对定量性状具有影响的染色体区域,但是潜在的致病突变仍然未被发现。在这项研究中,我们结合了可从三种不同品种(Duroc,Landrace和Large White)的商业猪育种计划获得的大基因型和表型数据,以查明影响第7个乳头数量的猪第7号染色体区域的功能变异。我们的研究结果表明,通过计数椎骨(NVE)和肋骨(RIB)的数量来完善性状定义有助于减少其他遗传变异产生的噪音,并将杜洛克的遗传力从0.28提高到0.62 NVE和0.78 RIB。但是,在Landrace中,相同QTL对NTE的影响主要影响NVE,而不影响RIB,这反映为RIB(0.24)的遗传力较NVE(0.59)降低。此外,等位基因频率和肋骨计数准确性的差异会影响遗传参数。对顶部SNP进行的校正不会检测到对Landrace或Duroc中的NTE,NVE或RIB的任何其他QTL影响。在分子水平上,从660K SNP数据得出的单倍型检测出杜洛克(Duroc)中七个SNP的核心单倍型。对16只杜洛克动物的序列分析表明,该Vertnin(VRTN)基因的两个功能性突变位于此单倍型上,已知该基因会增加胸椎(肋骨)的数量。在Landrace中,连锁不平衡(LD)延伸超过3 Mb的区域,其中还包含两个VRTN突变。在这里,其他修饰基因座有望引起品种特异性效应。在所有测序的地方品种动物中,在VRTN区域周围的野生型单倍型上发现的其他变体都指向了有望在整个基因组中也存在的品种特异性差异。这种长白种特异的单倍型在ABCD4基因中包含两个错义突变,其中一个有望对蛋白质功能产生负面影响。一起,大规模基因型,表型和序列数据的集成示例性地显示了人口参数如何受到分子水平上的基础变化的影响。

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