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Using pedigree information to study genetic diversity and re-evaluating a selection program in an experimental flock of Afshari sheep

机译:利用谱系信息研究遗传多样性并重新评估阿夫沙里羊实验羊群中的选择程序

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The purpose of this paper was to evaluate the inbreeding consequences of a short-term selection experiment which was initiated in 1998 in an Afshari sheep flock. Moreover, the conducted selection experiment was re-evaluated through assessing change in ranking of the first 10 influential ancestors when their genetic contributions were replaced with their breeding values. A total of 1714 animals were registered in the herdbook with a founder population comprised of 243 animals. The average coancestry (f) and inbreeding (F) in the reference population were 2.1% and 1.2%, respectively. Estimated value of the effective population size (Ne) was 50. The effective number of founders (fe) was estimated to be 40 and the effective number of ancestors (fa) was 34. Estimates of breeding values revealed that owing to phenotypic selection some ancestors with lower breeding values had greater contribution to the reference genome than those with greater breeding values and, for this reason, the population has been deprived from the maximum genetic improvement that could be achieved if selection was based on breeding values. The effective number of founder genomes (fg) was computed to be 23 and the effective number of non-founder genomes (fne) was 55. The index of genetic diversity decreased by almost 2.2% over the period studied. In general, decrease in genetic variability was low and Ne was not very low for a small-closed population under selection, indicating even in populations which undergo selection, besides achieving genetic gain, the rate of inbreeding is controllable if matings carefully planned.
机译:本文的目的是评估1998年在Afshari羊群中启动的短期选择实验的近交结果。此外,当他们的遗传贡献被其育种值取代时,通过评估前10位有影响力祖先的排名变化,对进行的选择实验进行了重新评估。牧群中总共登记了1714只动物,建立者种群包括243只动物。参考人群的平均血统(f)和近亲繁殖(F)分别为2.1%和1.2%。有效种群数量(Ne)的估计值为50。创建者的有效数量(fe)估计为40,祖先的有效数量(fa)为34。育种价值的估计显示,由于表型的选择,一些祖先与具有较高育种值的那些相比,具有较低育种值的那些对参考基因组的贡献更大,因此,如果选择基于育种值的话,该群体将无法获得最大的遗传改良。建立者基因组的有效数量(fg)计算为23,非建立者基因组的有效数量(fne)为55。在所研究的时期内,遗传多样性指数下降了近2.2%。通常,对于一个选择中的小封闭种群,遗传变异性的降低很低,Ne也不是很低,这表明即使在进行选择的种群中,除了获得遗传增益之外,如果精心安排交配,近交率也是可控的。

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