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Identification of a Nonsense Mutation in CWC15 Associated with Decreased Reproductive Efficiency in Jersey Cattle

机译:鉴定与泽西牛繁殖效率降低相关的CWC15的无意义突变

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摘要

With the recent advent of genomic tools for cattle, several recessive conditions affecting fertility have been identified and selected against, such as deficiency of uridine monophosphate synthase, complex vertebral malformation, and brachyspina. The current report refines the location of a recessive haplotype affecting fertility in Jersey cattle using crossover haplotypes, discovers the causative mutation using whole genome sequencing, and examines the gene’s role in embryo loss. In an attempt to identify unknown recessive lethal alleles in the current dairy population, a search using deep Mendelian sampling of 5,288 Jersey cattle was conducted for high-frequency haplotypes that have a deficit of homozygotes at the population level. This search led to the discovery of a putative recessive lethal in Jersey cattle on Bos taurus autosome 15. The haplotype, denoted JH1, was associated with reduced fertility, and further investigation identified one highly-influential Jersey bull as the putative source ancestor. By combining SNP analysis of whole-genome sequences aligned to the JH1 interval and subsequent SNP validation a nonsense mutation in CWC15 was identified as the likely causative mutation underlying the fertility phenotype. No homozygous recessive individuals were found in 749 genotyped animals, whereas all known carriers and carrier haplotypes possessed one copy of the mutant allele. This newly identified lethal has been responsible for a substantial number of spontaneous abortions in Jersey dairy cattle throughout the past half-century. With the mutation identified, selection against the deleterious allele in breeding schemes will aid in reducing the incidence of this defect in the population. These results also show that carrier status can be imputed with high accuracy. Whole-genome resequencing proved to be a powerful strategy to rapidly identify a previously mapped deleterious mutation in a known carrier of a recessive lethal allele.
机译:随着用于牛的基因组工具的最新出现,已经确定并选择了一些影响生育力的隐性条件,例如尿苷单磷酸合酶的缺乏,复杂的椎骨畸形和近距离脊柱裂。目前的报告使用交叉单倍型对隐性单倍型的位置进行了精确定位,利用全基因组测序发现了致病突变,并研究了该基因在胚胎丢失中的作用。为了确定当前奶牛种群中未知的隐性致死等位基因,使用孟德尔深度抽样对5,288头泽西牛进行了搜索,以寻找在种群水平上纯合子不足的高频单倍型。这项搜索导致在Bos taurus常染色体15上的泽西岛牛身上发现了一种假定的隐性致死性。单倍型表示为JH1,与生育力降低有关,进一步的研究确定了一只很有影响力的泽西公牛是假定的源祖先。通过将与JH1区间比对的全基因组序列的SNP分析和随后的SNP验证相结合,CWC15中的无意义突变被鉴定为潜在的育性表型突变。在749个基因型动物中没有发现纯合的隐性个体,而所有已知的携带者和携带者单倍型都具有一个拷贝的突变等位基因。在过去的半个世纪中,这种新发现的致死原因导致泽西奶牛大量自然流产。鉴定出突变后,在育种方案中选择有害的等位基因将有助于减少这种缺陷在人群中的发生率。这些结果还表明可以高精度地推断出载体状态。事实证明,全基因组重测序是一种有效的策略,可以快速识别隐性致死等位基因已知载体中先前定位的有害突变。

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