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Use of microsatellites and a combinatorial optimization approach in the acquisition of gilthead seabream (Sparus aurata L.) broodstocks for hatcheries

机译:使用微卫星和组合优化方法获取孵化场的金头鲷(Sparus aurata L.)亲鱼

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The acquisition of a stock should be considered the single most important aspect of broodstock management because it determines the maximum amount of genetic variance and how much inbreeding will be produced via future matings. Using a set of eleven microsatellite markers, we have screened two samples from a captive sea bream population (Sparus aurata) (n=661) from which three hatchery broodstocks will be established. We have estimated the relatedness coefficients between all the possible candidates to form those new broodstocks (-0.380317) and the microsatellite loci showed high PIC values (over 0.700). The searching method was not only appropriate but also very efficient. All three new broodstocks (60 individuals each) keep almost all the genetic variance previously assessed. Means of 17 alleles per locus, values of 0.80 as expected heterozygosities and, in addition, higher PIC values (0.84 as a mean) in these groups with respect to the original samples ensuring long term genetic response if necessary and guarantees a minimal inbreeding risk under our culture conditions since we have limited the relatedness distributions to -0.3416
机译:种群的获取应被视为亲鱼管理的最重要方面,因为它决定了最大的遗传变异量以及通过未来的交配将产生多少近交。我们使用一组11个微卫星标记,从圈养的鲷鱼种群(Sparus aurata)(n = 661)中筛选了两个样本,将从中建立了三个孵化场亲鱼。我们已经估计了所有可能的候选者之间的相关系数,以形成那些新的亲虾(-0.3803 17),微卫星基因座显示出较高的PIC值(超过0.700)。搜索方法不仅合适而且非常有效。所有这三只新亲鱼(每只60只)保留了以前评估的几乎所有遗传变异。这些基因组的平均每个位点有17个等位基因,预期杂合度为0.80,此外,相对于原始样品,这些PIC值较高(平均值为0.84),从而确保了长期的遗传反应,并在必要时保证了最低的近亲繁殖风险我们的文化条件,因为我们将相关性分布限制在-0.3416

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