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Harmful recessive effects on fertility detected by absence of homozygous haplotypes

机译:没有纯合单倍型对生育力的有害隐性影响

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摘要

Five new recessive defects were discovered in Holsteins, Jerseys, and Brown Swiss by examining haplotypes that had a high population frequency but were never homozygous. The method required genotypes only from apparently normal individuals and not from affected embryos. Genotypes from the BovineSNP50 BeadChip (Illumina, San Diego, CA) were examined for 58,453 Holsteins, 5,288 Jerseys, and 1,991 Brown Swiss with genotypes in the North American database. Haplotypes with a length of <75 markers were obtained. Eleven candidate haplotypes were identified, with the earliest carrier born before 1980; 7 to 90 homozygous haplotypes were expected, but none were observed in the genomic data. Expected numbers were calculated using either the actual mating pattern or assuming random mating. Probability of observing no homozygotes ranged from 0.0002 for 7 to 10~45 for 90 expected homozygotes. Phe-notypic effects were confirmed for 5 of the 11 candidate haplotypes using 14,911,387 Holstein, 830,391 Jersey, and 68,443 Brown Swiss records for conception rate. Estimated effect for interaction of carrier service sire with carrier maternal grandsire ranged from -3.0 to -3.7 percentage points, which was slightly smaller than the -3.9 to -4.6 percentage points expected for lethal recessives but slightly larger than estimated effects for previously known lethal alleles of -2.5 percentage points for brachyspina and -2.9 percentage points for complex vertebral malformation. Conception rate was coded as a success only if the gestation went to term or the cow was confirmed to be pregnant. Estimated effect of carrier interaction for stillbirth rate based on 10,876,597 Holstein and 25,456 Jersey records was small. Thus, lethal effects may include conception, gestation, and stillbirth losses. Carrier frequency has been >20% for many years for the confirmed defect in Jerseys and is currently 16% for the defect in Brown Swiss. The 3 defects discovered in Holsteins have carrier frequencies of 2.7 to 6.4% in the current population. For previously known defects, map locations and lack of homozygotes were consistent with the literature and lethal recessive inheritance, but numbers of expected homozygotes for some were small because of low frequency. Very large genotypic and phenotypic data sets allow efficient detection of smaller and less frequent effects. Haplotype tests can help breeders avoid carrier matings for such defects and reduce future frequencies.
机译:通过检查具有高种群频率但从不纯合的单倍型,在荷斯坦,泽西岛和布朗瑞士发现了五个新的隐性缺陷。该方法仅需要表观正常个体的基因型,而不需要受影响的胚胎的基因型。在北美数据库中,对来自BovineSNP50 BeadChip(Illumina,圣地亚哥,加利福尼亚)的基因型进行了检查,检查了其中的基因型为58,453个荷斯坦,5,288个泽西岛和1,991个棕色瑞士人。获得长度<75个标记的单倍型。鉴定出11个候选单倍型,最早的携带者出生于1980年之前。预期有7至90个纯合单倍型,但在基因组数据中均未观察到。使用实际的交配模式或假设随机交配来计算预期数量。没有观察到纯合子的概率在0.0002到7到10〜45之间(对于90个预期的纯合子)。使用14,911,387荷斯坦,830,391泽西和68,443布朗瑞士记录的受孕率,确认了11种候选单倍型中的5种的苯丙氨酸-非典型效应。承运人服务父亲与承运人母孙代之间相互作用的估计影响范围为-3.0至-3.7个百分点,比致死性隐性动物预期的-3.9至-4.6个百分点略小,但比先前已知的致死等位基因的估计影响稍大短脊椎为-2.5个百分点,复杂椎骨畸形为-2.9个百分点。仅在妊娠中期或确认母牛怀孕时,才将受胎率编码为成功。根据Holstein和25,456记录的10,876,597荷尔蒙记录,估计载体相互作用对死产率的影响很小。因此,致命影响可能包括怀孕,妊娠和死产。多年来,对于已确认的泽西岛缺陷,载波频率一直> 20%,而对于布朗瑞士公司而言,目前为16%。在霍尔斯坦人中发现的3个缺陷在当前人口中的载频为2.7%至6.4%。对于以前已知的缺陷,图谱的位置和纯合子的缺乏与文献和致死的隐性遗传是一致的,但是由于频率低,某些人的预期纯合子的数量很少。非常大的基因型和表型数据集可以有效地检测较小和较不频繁的效应。单倍型测试可以帮助育种者避免因此类缺陷而导致的交配,并减少将来发生的频率。

著录项

  • 来源
    《Journal of dairy science》 |2011年第12期|p.6153-6161|共9页
  • 作者单位

    Animal Improvement Programs Laboratory, Agricultural Research Service, USDA, Beltsville, MD 20705-2350;

    National Association of Animal Breeders, Columbia, MO 66205-1033;

    Animal Improvement Programs Laboratory, Agricultural Research Service, USDA, Beltsville, MD 20705-2350;

    Animal Improvement Programs Laboratory, Agricultural Research Service, USDA, Beltsville, MD 20705-2350;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    genomics; lethal recessive; haplotype; homozygote;

    机译:基因组学致命的隐性单倍型纯合子;
  • 入库时间 2022-08-17 23:24:41

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