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首页> 外文期刊>Journal of Animal Breeding and Genetics >A whole genome scan to map QTL for milk production traits and somatic cell score in Canadian Holstein bulls
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A whole genome scan to map QTL for milk production traits and somatic cell score in Canadian Holstein bulls

机译:一个全基因组扫描来映射加拿大荷斯坦公牛牛奶生产性状的QTL和体细胞分数

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摘要

The detection and mapping of genetic markers linked to quantitative trait loci (QTL) can be utilized to enhance genetic improvement of livestock populations. With the completion of the bovine genome sequence assembly, single nucleotide polymorphisms (SNP) assays spanning the whole bovine genome and research work on large scale identification, validation and analysis of genotypic variation in cattle has become possible. The objective of the present study was to perform a whole genome scan to identify and map QTL affecting milk production traits and somatic cell scores using linkage disequilibrium (LD) regression and 1536 SNP markers. Three and 18 SNP were found to be associated with only milk yield (MY) at a genome and chromosome wise significance (p < 0.05) level respectively. Among the 21 significant SNP, 16 were in a region reported to have QTL for MY in other dairy cattle populations and while the rest five were new QTL finding. Four SNP out of 21 are significant for the milk production traits (MY, fat yield, protein yield (PY), and milk contents) in the present study. Six and nine SNP were associated with PY at a genome and chromosome wise significant (p < 0.05) level respectively. Three and 17 SNP were found to be associated with FY at a genome and chromosome wise significant (p < 0.05) level. Five and seven SNP were mapped with somatic cell score at a genome and chromosome wise significant (p < 0.05) level respectively. The results of this study have revealed QTL for MY, PY, protein percentage, FY, fat percentage, somatic cell score and persistency of milk in the Canadian dairy cattle population. The chromosome regions identified in this study should be further investigated to potentially identify the causative mutations underlying the QTL.
机译:与定量性状基因座(QTL)相关的遗传标记的检测和映射可用于增强牲畜群的遗传改善。随着牛基因组序列组件的完成,跨越整个牛基因组的单核苷酸多态性(SNP)测定和对大规模鉴定,验证和养牛基因型变异分析的研究工作。本研究的目的是进行全基因组扫描,以鉴定和使用连锁不平衡(LD)回归和1536个SNP标记的乳液产生性状和体细胞分数的QTL。发现三和18只SNP分别在基因组和染色体中分别仅与牛奶产量(MY)相关联(P <0.05)。在21个重要的SNP中,16个是在一个地区据报道,在其他乳制品牛群中有QTL,而其余五个是新的QTL寻找。在本研究中,21分的四种SNP对于乳产生性状(我的脂肪产量,蛋白质产量(PY)和牛奶含量)显着。六个和九个SNP分别与Py在基因组和染色体明智(P <0.05)水平相关联。发现三和17个SNP与基因组和染色体明智的FY相关联(P <0.05)水平。在基因组和染色体明智(P <0.05)水平的基因组和染色体中,将五个和七个SNP映射。该研究的结果揭示了我的,Py,蛋白质百分比,FY,脂肪百分比,体细胞分数和加拿大奶牛群牛奶持久性的QTL。应进一步研究本研究中鉴定的染色体区域,以潜在地识别QTL下面的致病性突变。

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  • 作者单位

    Department of Agricultural Food and Nutritional Science University of Alberta Edmonton Alberta Canada;

    Department of Agricultural Food and Nutritional Science University of Alberta Edmonton Alberta Canada;

    Department of Agricultural Food and Nutritional Science University of Alberta Edmonton Alberta Canada;

    Department of Agricultural Food and Nutritional Science University of Alberta Edmonton Alberta Canada;

    Department of Agricultural Food and Nutritional Science University of Alberta Edmonton Alberta Canada;

    Department of Agricultural Food and Nutritional Science University of Alberta Edmonton Alberta Canada;

    Department of Agricultural Food and Nutritional Science University of Alberta Edmonton Alberta Canada;

    Department of Agricultural Food and Nutritional Science University of Alberta Edmonton Alberta Canada;

    Department of Agricultural Food and Nutritional Science University of Alberta Edmonton Alberta Canada;

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  • 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

    linkage disequilibrium;

    机译:连锁不平衡;

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