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Combined analysis of data from two granddaughter designs: A simple strategy for QTL confirmation and increasing experimental power in dairy cattle

机译:两种孙女设计数据的组合分析:QTL确认的简单策略和提高奶牛实验能力的方法

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摘要

A joint analysis of five paternal half-sib Holstein families that were part of two different granddaughter designs (ADR- or Inra-design) was carried out for five milk production traits and somatic cell score in order to conduct a QTL confirmation study and to increase the experimental power. Data were exchanged in a coded and standardised form. The combined data set (JOINT-design) consisted of on average 231 sires per grandsire. Genetic maps were calculated for 133 markers distributed over nine chromosomes. QTL analyses were performed separately for each design and each trait. The results revealed QTL for milk production on chromosome 14, for milk yield on chromosome 5, and for fat content on chromosome 19 in both the ADR- and the Inra-design (confirmed within this study). Some QTL could only be mapped in either the ADR- or in the Inra-design (not confirmed within this study). Additional QTL previously undetected in the single designs were mapped in the JOINT-design for fat yield (chromosome 19 and 26), protein yield (chromosome 26), protein content (chromosome 5), and somatic cell score (chromosome 2 and 19) with genomewide significance. This study demonstrated the potential benefits of a combined analysis of data from different granddaughter designs.
机译:为了进行QTL确认研究并增加QTL确认研究,对五个不同产奶性状和体细胞评分的五个父孙同胞荷斯坦奶牛家族(两个不同的孙女设计(ADR或Inra-design)的一部分)进行了联合分析。实验能力。数据以编码和标准化的形式交换。组合的数据集(JOINT设计)平均每个大父本由231个父本组成。计算了分布在九个染色体上的133个标记的遗传图谱。针对每个设计和每个特征分别进行QTL分析。结果揭示了在ADR和Inra设计中QTL在14号染色体上的产奶量,5号染色体上的产奶量和19号染色体上的脂肪含量(在本研究中得到确认)。某些QTL只能在ADR或Inra设计中进行映射(本研究中未确认)。以前在单一设计中未检测到的其他QTL在JOINT设计中作图,涉及脂肪产量(19号和26号染色体),蛋白质产量(26号染色体),蛋白质含量(5号染色体)和体细胞评分(2号和19号染色体),全基因组意义。这项研究证明了对来自不同孙女设计的数据进行综合分析的潜在好处。

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