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204 Genomics of age at puberty in gilts

机译:204年龄在吉尔斯青春期的年龄基因组学

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摘要

Our previous research demonstrated that age at puberty is characterized by moderate heritability and is an early pre-breeding indicator of sow fertility. Early selection of gilts, based on genomic prediction of age at puberty and fertility in general, is considered a potential approach to reduce sow culling. Phenotypes, genotypes and tissues from UNL resource population (n > 1,700) were used in initial genome-wide association to identify regions of the genome associated with age at puberty. The proportion of phenotypic variation for age at puberty explained by the Porcine SNP60 BeadArray was 27.3%, with top genomic regions responsible for relatively small effects. The top 1-Mb windows (1%) explained 6.7% of the genetic variation with one window located on SSC2 (12–12.9 Mb) displaying pleiotropic features, affecting both age at puberty and litter size. These top genomic regions were oversaturated with new genetic variants discovered by deep genomic and RNA (arcuate nucleus) sequencing, which were integrated in SowPro90, a custom Affymetrix SNP array. Using a subset of sows representing extremes of the distribution for age at puberty (n = 283) and genotyped with the SowPro90 led to identification of a SNP in the proximal promoter of the UBE2L6 (SSC2, 13.3Mb; F = 13.39; P = 0.0003), a gene known to modulate function of ISG15, a marker for pregnancy. This novel SNP, which exceeded the effect of the original top SNP in the region (DIAS0004771; F = 6.98), explained 6.8% of the proportion of phenotypic variance. Identification of functional polymorphisms that influence age at puberty could lead to improvements in the accuracy of genomic prediction while reducing sow replacement rates. This project was supported by AFRI Competitive Grant no. 2013-68004-20370 from the USDA-NIFA.
机译:我们以前的研究表明,青春期的年龄以中度遗传性为特征,是播种肥力的早期预育种指标。基于青春期和生育率的年龄的基因组预测的基于青春期和生育的基因组预测,被认为是减少播种剔除的潜在方法。从资源群体(N> 1,700)的表型,基因型和组织用于初始基因组 - 宽协会,以鉴定与青春期有效的基因组的区域。猪SNP60珠阵解释的青春期成年人的表型变异的比例为27.3%,具有顶部基因组区域,负责相对较小的效果。前1-MB窗口(1%)解释了6.7%的遗传变异,一个窗口位于SSC2(12-12.9 MB)上,显示出脂肪特征,影响青春期和垃圾尺寸的年龄。这些顶部基因组区域因深基因组和RNA(弓形核)测序发现的新的遗传变体而过度,该遗传变体集成在SOWPRO90中,是一种自定义的Affymetrix SNP阵列。使用代表Puberty(n = 283)的年龄分布的极端的母猪的子集,并用SowPro90基因分型导致UBE2L6的近端启动子中的SNP(SSC2,13MB; F = 13.39; P = 0.0003 ),已知调节ISG15功能的基因,妊娠的标记。这种新型SNP超过了该地区原始顶部SNP的效果(DiaS0004771; F = 6.98),解释了表型方差比例的6.8%。鉴定影响青春期年龄的功能多态性可能导致基因组预测的准确性的提高,同时减少播种速率。该项目得到了AFRI竞争授权书的支持。 2013-68004-20370来自USDA-Nifa。

著录项

  • 期刊名称 Journal of Animal Science
  • 作者

    Daniel Ciobanu;

  • 作者单位
  • 年(卷),期 2019(97),Suppl 2
  • 年度 2019
  • 页码 118
  • 总页数 1
  • 原文格式 PDF
  • 正文语种
  • 中图分类 动物学;
  • 关键词

    机译:青春期的年龄;SNP;基因组选择;

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