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Examination of the efficacy of small genetic panels in genomic conservation of companion animal populations

机译:小型遗传面板在伴侣动物种群基因组保护中的疗效检查

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摘要

In many ways, dogs are an ideal model for the study of genetic erosion and population recovery, problems of major concern in the field of conservation genetics. Genetic diversity in many dog breeds has been declining systematically since the beginning of the 1800s, when modern breeding practices came into fashion. As such, inbreeding in domestic dog breeds is substantial and widespread and has led to an increase in recessive deleterious mutations of high effect as well as general inbreeding depression. Pedigrees can in theory be used to guide breeding decisions, though are often incomplete and do not reflect the full history of inbreeding. Small microsatellite panels are also used in some cases to choose mating pairs to produce litters with low levels of inbreeding. However, the long‐term impact of such practices has not been thoroughly evaluated. Here, we use forward simulation on a model of the dog genome to examine the impact of using limited marker panels to guide pairwise mating decisions on genome‐wide population‐level genetic diversity. Our results suggest that in unmanaged populations, where breeding decisions are made at the pairwise—rather than population‐level, such panels can lead to accelerated loss of genetic diversity at genome regions unlinked to panel markers, compared to random mating. These results demonstrate the importance of genome‐wide genetic panels for managing and conserving genetic diversity in dogs and other companion animals.
机译:在许多方面,狗是研究遗传侵蚀和人口恢复研究的理想模型,遗传遗传学领域的主要关注问题。自18世纪初以来,许多狗品种的遗传多样性在18世纪初,当现代养殖实践发生时,自19世纪初。因此,国内狗品种的近亲繁殖是大量和普遍的,并导致高效应的隐性有害突变的增加以及一般近亲繁殖的抑郁症。 Pedigrees可以理解用于指导繁殖决策,但通常不完整,不反映近亲繁殖的全部历史。在某些情况下,还使用小微卫星板选择配对成对以产生具有低近亲繁殖的窝。但是,这些做法的长期影响尚未得到彻底评估。在这里,我们在狗基因组的模型上使用前向模拟来检查使用有限标记面板对基因组人口水平遗传多样性的成对配合决策的影响。我们的研究结果表明,在非托管人口中,与一对群体级别的育种决策,这些面板可以导致与随机交配的基因组区内的基因组区域加速遗传多样性丧失。这些结果表明了基因组遗传面板在狗和其他伴侣动物中管理和保护遗传多样性的重要性。

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