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Confirming QTL for calving and fertility traits on bovine chromosomes 7 and 10 in German Holsteins

机译:确认德国荷斯坦牛的7号和10号牛犊的产犊和受精性状的QTL

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摘要

The aim of the study was to confirm previously detected quantitative trait loci (QTL) for calving and fertility traits on bovine chromosomes 7 (BTA7) and 10 (BTA10) in the German Holstein population. A granddaughter design consisting of 31 (BTA7) and 30 families (BTA10) with a total of 1432 (BTA7) and 1419 (BTA10) sons was used for confirmation studies. All half-sibs were genotyped for six markers on each chromosome. Phenotypes for calving traits were parity-specific daughter yield deviations estimated univariately via a sire model. Estimated breeding values from routine breeding estimation were used for fertility traits. QTL analyses were done by linear regression on QTL transmission probabilities at each cM on the respective chromosomal segment. Permutation testing was used to determine the chromosome wise critical values. Additionally, the Fisher exact test was used either for each chromosome and each trait separately (univariate approach) or for each chromosome across traits (multivariate approach). No significant QTL could be confirmed with permutation testing using the univariate approach. However, the hit excesses of segregating families provided some evidence for QTL affecting calving traits on both BTA7 and BTA10 and for fertility traits on BTA7. This evidence was supported by the results of the Fisher exact test across traits, which were highly significant for calving traits on both chromosomes and for fertility traits on BTA7.
机译:这项研究的目的是确认先前检测到的德国荷斯坦牛犊牛染色体7(BTA7)和10(BTA10)上产犊和繁殖性状的数量性状基因座(QTL)。由31个(BTA7)和30个家庭(BTA10)以及总共1432(BTA7)和1419(BTA10)个儿子组成的孙女设计用于确认研究。对所有半同胞进行基因型分型,每个染色体上有六个标记。产犊性状的表型是通过父亲模型单变量估计的奇偶性子代产量变异。根据常规育种估算值估算育种性状。通过对各个染色体片段上每个cM处的QTL传播概率进行线性回归,对QTL进行分析。排列测试用于确定染色体明智的临界值。此外,将Fisher精确检验分别用于每个染色体和每个性状(单变量方法)或用于跨性状的每个染色体(多变量方法)。使用单变量方法进行的排列检验无法确认明显的QTL。然而,隔离家庭遭受的过度打击为QTL影响了BTA7和BTA10的产犊性状以及BTA7的生育性状提供了一些证据。 Fisher各项性状精确测试的结果支持了这一证据,这对于产犊两个染色体的性状和BTA7的育性性状都非常重要。

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