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Utilice este identificador para citar o enlazar este documento: https://ria.asturias.es/RIA/handle/123456789/12106


Título: Y-specific microsatellites reveal an African subfamily in taurine (Bos taurus) cattle
Autores: Perez Pardal, L.
Royo, L.
Beja Pereira, A.
Curik, I.
Traore, A.
Fernández, I.
Solkner, J.
Alonso, J.
Alvarez, I.
Bozzi, R.
Chen, S.
León, F. de
Goyache, F.
Palabras Claves: Ganado bovino
Filogenia
Domesticación
Cromosoma Y
Marcadores específicos de Y
Fecha Edición: 2010
Editor: Wiley
Cita Bibliográfica: Pérez Pardal, L... [et al.]. Y-specific microsatellites reveal an African subfamily in taurine (Bos taurus) cattle. Animal Genetics. 2010 ; 41 :232-241
Resumen: Five cattle Y-specific microsatellites, totalling six loci, were selected from a set of 44 markers and genotyped on 608 Bos taurus males belonging to 45 cattle populations from Europe and Africa. A total of 38 haplotypes were identified. Haplogroups (Y1 and Y2) previously defined using single nucleotide polymorphisms did not share haplotypes. Nine of the 27 Y2-haplotypes were only present in African cattle. Network and correspondence analyses showed that this African-specific subfamily clustered separately from the main Y2-subfamily and the Y1 haplotypes. Within-breed genetic variability was generally low, with most breeds (78%) showing haplotypes belonging to a single haplogroup. AMOVA analysis showed that partitioning of genetic variation among breeds can be mainly explained by their geographical and haplogroup assignment. Between-breed genetic variability summarized via Principal Component Analysis allowed the identification of three principal components explaining 94.2% of the available information. Projection of principal components on geographical maps illustrated that cattle populations located in mainland Europe, the three European Peninsulas and Mediterranean Africa presented similar genetic variation, whereas those breeds from Atlantic Europe and British Islands (mainly carrying Y1 haplotypes) and those from Sub-Saharan Africa (belonging to Y2-haplogroup) showed genetic variation of a different origin. Our study confirmed the existence of two large Ychromosome lineages (Y1 and Y2) in taurine cattle. However, Y-specific microsatellites increased analytical resolution and allowed at least two different Y2-haplotypic subfamilies to be distinguished, one of them restricted to the African continent.
URI: https://ria.asturias.es/RIA/handle/123456789/12106
ISSN: 0268-9146
Aparece en las Colecciones:Agroalimentación y Ganadería

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