Replacement of microsatellite markers by imputed medium-density SNP arrays for parentage control in German warmblood horses

In horses, parentage control is currently performed based on an internationally standardized panel of 17 microsatellite (MS) markers comprising 12 mandatory and five optional markers. Unlike MS, single nucleotide polymorphism (SNP) profiles support a wider portfolio of genomic applications, includin...

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Veröffentlicht in:Journal of applied genetics 2022-12, Vol.63 (4), p.783-792
Hauptverfasser: Nolte, Wietje, Alkhoder, Hatem, Wobbe, Mirell, Stock, Kathrin F., Kalm, Ernst, Vosgerau, Sarah, Krattenmacher, Nina, Thaller, Georg, Tetens, Jens, Kühn, Christa
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Sprache:eng
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Zusammenfassung:In horses, parentage control is currently performed based on an internationally standardized panel of 17 microsatellite (MS) markers comprising 12 mandatory and five optional markers. Unlike MS, single nucleotide polymorphism (SNP) profiles support a wider portfolio of genomic applications, including parentage control. A transition to SNP-based parentage control is favorable, but requires additional efforts for ensuring generation-overlapping availability of marker genotypes of the same type. To avoid double genotyping of either parents or offspring for changing to SNP technology and enable efficient transition, we tested whether MS genotypes used for parentage control could be reliably imputed from a medium-density SNP panel in German warmblood horses. Imputation accuracy was tested in a tenfold cross-validation with two approaches: within breed (option A) and across breeds (option B). Average imputation accuracies of 97.98% (A) and 96.17% (B) were achieved, respectively. Due to interbreed differences in genotyping rates, five MS markers of low genotyping rate (GTR; 
ISSN:1234-1983
2190-3883
DOI:10.1007/s13353-022-00725-9