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首页> 外文期刊>Animal >Dissecting total genetic variance into additive and dominance components of purebred and crossbred pig traits
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Dissecting total genetic variance into additive and dominance components of purebred and crossbred pig traits

机译:将总遗传方差抑制成纯种和杂交猪特征的添加剂和优势组分

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摘要

The partition of the total genetic variance into its additive and non-additive components can differ from trait to trait, and between purebred and crossbred populations. A quantification of these genetic variance components will determine the extent to which it would be of interest to account for dominance in genomic evaluations or to establish mate allocation strategies along different populations and traits. This study aims at assessing the contribution of the additive and dominance genomic variances to the phenotype expression of several purebred Piétrain and crossbred (Piétrain × Large White) pig performances. A total of 636 purebred and 720 crossbred male piglets were phenotyped for 22 traits that can be classified into six groups of traits: growth rate and feed efficiency, carcass composition, meat quality, behaviour, boar taint and puberty. Additive and dominance variances estimated in univariate genotypic models, including additive and dominance genotypic effects, and a genomic inbreeding covariate allowed to retrieve the additive and dominance single nucleotide polymorphism variances for purebred and crossbred performances. These estimated variances were used, together with the allelic frequencies of the parental populations, to obtain additive and dominance variances in terms of genetic breeding values and dominance deviations. Estimates of the Piétrain and Large White allelic contributions to the crossbred variance were of about the same magnitude in all the traits. Estimates of additive genetic variances were similar regardless of the inclusion of dominance. Some traits showed relevant amount of dominance genetic variance with respect to phenotypic variance in both populations (i.e. growth rate 8%, feed conversion ratio 9% to 12%, backfat thickness 14% to 12%, purebreds-crossbreds). Other traits showed higher amount in crossbreds (i.e. ham cut 8% to 13%, loin 7% to 16%, pH semimembranosus 13% to 18%, pH longissimus dorsi 9% to 14%, androstenone 5% to 13% and estradiol 6% to 11%, purebreds-crossbreds). It was not encountered a clear common pattern of dominance expression between groups of analysed traits and between populations. These estimates give initial hints regarding which traits could benefit from accounting for dominance for example to improve genomic estimated breeding value accuracy in genetic evaluations or to boost the total genetic value of progeny by means of assortative mating.
机译:将总遗传方差的分区分成其添加剂和非添加剂组分可以与特征不同,以及纯种和杂交种群之间的特征不同。这些遗传方差组分的量化将确定其感兴趣的程度,以考虑基因组评估中的统治性或建立沿不同人群和特征的伴侣分配策略。本研究旨在评估添加剂和优势基因组差异对几种纯种Piérain和杂交(Piétrain×大白)猪表现的表型表达的贡献。总共636个纯种和720克杂种雄性仔猪进行了表型,可分为22种性状,可分为六组特征:生长速率和饲料效率,胴体成分,肉质,行为,公猪污水和青春期。在单变量基因型模型中估计的添加剂和优势差异,包括添加剂和优势基因型作用,以及允许的基因组近亲共用调节,以检索纯种和杂交性能的添加剂和优势单核苷酸多态性差异。使用这些估计的差异与父母群体的等位基因频率一起使用,以获得遗传育种值和优势偏差方面的添加剂和优势差。对杂交方差的Piérain和大白等位基因贡献的估计在所有特征中具有大致相同的幅度。无论含有优势如何,添加剂遗传差异的估计都是相似的。一些特征表明,关于两种群体的表型差异的相关量遗传方差(即,生长速率8%,进料转化率为9%至12%,背带厚度为14%至12%,纯血统杂交)。其他特征在杂交中表现出更高的杂交量(即火腿切割8%至13%,终止7%至16%,pH半透明13%至18%,pH值为9%至14%,androstenone 5%至13%和雌二醇6 %至11%,纯血统杂交)。在分析的特征和人群之间,没有遇到明确的常见常见的优势表达模式。这些估计为哪些特征提供了初始提示,这些特征可以从核算中受益于统治性,例如改善遗传评估中的基因组估计的育种价值准确性,或通过各种交配提高后代的总遗传值。

著录项

  • 来源
    《Animal》 |2019年第11期|共11页
  • 作者单位

    GenPhySE Université de Toulouse Institut National de la Recherche Agronomique Institut National Polytechnique de Toulouse Institut National Polytechnique;

    GenPhySE Université de Toulouse Institut National de la Recherche Agronomique Institut National Polytechnique de Toulouse Institut National Polytechnique;

    GenPhySE Université de Toulouse Institut National de la Recherche Agronomique Institut National Polytechnique de Toulouse Institut National Polytechnique;

    IFIP Institut du Porc/ALLIANCE R&

    S;

    GenPhySE Université de Toulouse Institut National de la Recherche Agronomique Institut National Polytechnique de Toulouse Institut National Polytechnique;

    GenPhySE Université de Toulouse Institut National de la Recherche Agronomique Institut National Polytechnique de Toulouse Institut National Polytechnique;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 畜牧、动物医学、狩猎、蚕、蜂;
  • 关键词

    variance components; non-additive genetic effects; inbreeding; crossbreds; pork;

    机译:方差组分;非添加性遗传效应;近亲繁殖;杂交;猪肉;

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