Confirmation and refinement of a QTL on BTA5 affecting milk production traits in the Fleckvieh dual purpose cattle breed

Summary We analysed a QTL affecting milk yield (MY), milk protein yield (PY) and milk fat yield (FY) in the dual purpose cattle breed Fleckvieh on BTA5. Twenty‐six microsatellite markers covering 135 cM were selected to analyse nine half‐sib families containing 605 sons in a granddaughter design. We...

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Veröffentlicht in:Animal genetics 2010-02, Vol.41 (1), p.1-11
Hauptverfasser: Awad, A., Russ, I., Emmerling, R., Förster, M., Medugorac, I.
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Sprache:eng
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Zusammenfassung:Summary We analysed a QTL affecting milk yield (MY), milk protein yield (PY) and milk fat yield (FY) in the dual purpose cattle breed Fleckvieh on BTA5. Twenty‐six microsatellite markers covering 135 cM were selected to analyse nine half‐sib families containing 605 sons in a granddaughter design. We thereby assigned two new markers to the public linkage map using the CRI‐MAP program. Phenotypic records were daughter yield deviations (DYD) originating from the routinely performed genetic evaluations of breeding animals. To determine the position of the QTL, three different approaches were applied: interval mapping (IM), linkage analysis by variance component analysis (LAVC), and combined linkage disequilibrium (LD) and linkage (LDL) analysis. All three methods mapped the QTL in the same marker interval (BM2830‐ETH152) with the greatest test‐statistic value at 118, 119.33 and 119.33 cM respectively. The positive QTL allele simultaneously increases DYD in the first lactation by 272 kg milk, 7.1 kg milk protein and 7.0 kg milk fat. Although the mapping accuracy and the significance of a QTL effect increased from IM over LAVC to LDL, the confidence interval was large (13, 20 and 24 cM for FY, MY and PY respectively) for the positional cloning of the causal gene. The estimated averages of pair wise marker LD with a distance
ISSN:0268-9146
1365-2052
DOI:10.1111/j.1365-2052.2009.01957.x