Influence of foreign breeds on the genetic structure of the Spanish Sport Horse population

نویسندگان

  • E. Bartolomé
  • I. Cervantes
  • M. Valera
  • J. P. Gutiérrez
چکیده

Article history: Received 1 December 2010 Received in revised form 27 June 2011 Accepted 28 June 2011 The Spanish Sport Horse (SSH) is a recent breed, founded in 2002 in the search for a breed with a first-rate performance at any of the Olympic equestrian disciplines (dressage, show jumping and/ or eventing). The aimof this researchwas to describe the genetic structure of the SSHand to assess the influence of foreign breeds in its genetic structure. The whole pedigree included 34,017 animals. Pedigree analyses were carried out for the registered SSH after the Stud Book was closed (for a ‘reference population’ with 4289 individuals). The consequences of a new Stud Book regulationwere considered in three subpopulations, includingas a referencepopulation those SSH animalswith both SSHparents orwith at least one SSHparent (father ormother). In order to study the influence of the foreign sport breeds, 9 genetic lines were assessed according to their country of origin. Demographic parameters, level of inbreeding, effective population size, probability of gene origin and genetic structure of the SSH populationwere assessed using ENDOG v4.8. In order to compare the evolution of the genetic variability present within the different genetic lines, the resultant founder genome equivalent (fg) after 10 generationswas calculated for each genetic line and for each subpopulation. The reference population showed a completeness level of over 85% until the third parental generation with a generation interval of 10.8 years and an inbreeding coefficient of 0.66%, with an average relatedness of 0.16%. The probability of gene origin showed that the SSH breed has its origins mainly in German sport horse breeds. The evolution of the genetic lines fg, showed that ‘Mixed’, ‘Others’ and ‘SPB’ genetic lines proportionally decreased the most over ten generations (22.8%, 23.0% and 17.2%, respectively), whereas the evolution of the subpopulations fg showed a higher loss of genetic variability in the reference population and in the subpopulation with at least one SSHmother. The ratio between the effective size computed using paired increases in coancestries and the effective size based on individual increases in inbreeding for the reference population was quite high (4.6), showing a strong subdivision that could be an effect of the three breeding goals proposed in the SSH Breeding Program. This value also increased considerably when the three subpopulations studied (both SSH parents, at least the father SSH or at least the mother SSH) were considered (to 7.3, 5.6 and 5.8, respectively). These results suggested that it is not yet advisable to apply restricting policies in this population, as this could lead to a reduction in the genetic diversity. © 2011 Elsevier B.V. All rights reserved.

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تاریخ انتشار 2011