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首页> 外文期刊>Genetics, selection, evolution >Response to genomic selection: The Bulmer effect and the potential of genomic selection when the number of phenotypic records is limiting
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Response to genomic selection: The Bulmer effect and the potential of genomic selection when the number of phenotypic records is limiting

机译:对基因组选择的反应:当表型记录的数量受到限制时,布尔默效应和基因组选择的潜力

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Background Over the last ten years, genomic selection has developed enormously. Simulations and results on real data suggest that breeding values can be predicted with high accuracy using genetic markers alone. However, to reach high accuracies, large reference populations are needed. In many livestock populations or even species, such populations cannot be established when traits are difficult or expensive to record, or when the population size is small. The value of genomic selection is then questionable. Methods In this study, we compare traditional breeding schemes based on own performance or progeny information to genomic selection schemes, for which the number of phenotypic records is limiting. Deterministic simulations were performed using selection index theory. Our focus was on the equilibrium response obtained after a few generations of selection. Therefore, we first investigated the magnitude of the Bulmer effect with genomic selection. Results Results showed that the reduction in response due to the Bulmer effect is the same for genomic selection as for selection based on traditional BLUP estimated breeding values, and is independent of the accuracy of selection. The reduction in response with genomic selection is greater than with selection based directly on phenotypes without the use of pedigree information, such as mass selection. To maximize the accuracy of genomic estimated breeding values when the number of phenotypic records is limiting, the same individuals should be phenotyped and genotyped, rather than genotyping parents and phenotyping their progeny. When the generation interval cannot be reduced with genomic selection, large reference populations are required to obtain a similar response to that with selection based on BLUP estimated breeding values based on own performance or progeny information. However, when a genomic selection scheme has a moderate decrease in generation interval, relatively small reference population sizes are needed to obtain a similar response to that with selection on traditional BLUP estimated breeding values. Conclusions When the trait of interest cannot be recorded on the selection candidate, genomic selection schemes are very attractive even when the number of phenotypic records is limited, because traditional breeding requires progeny testing schemes with long generation intervals in those cases.
机译:背景技术在过去的十年中,基因组选择取得了长足的发展。对真实数据的模拟和结果表明,仅使用遗传标记就可以高精度预测育种值。但是,为了达到较高的准确度,需要大量的参考人群。在许多牲畜种群甚至物种中,当性状难以记录或价格昂贵,或者种群数量较小时,就无法建立此类种群。因此,基因组选择的价值值得怀疑。方法在本研究中,我们将基于自身性能或后代信息的传统育种方案与基因型选择方案进行了比较,而表型记录的数量受到限制。确定性模拟使用选择指数理论进行。我们的重点是经过几代选择后获得的平衡响应。因此,我们首先研究了基因组选择对布尔默效应的影响。结果结果表明,由于布尔默效应而导致的响应降低与基于传统BLUP估计育种值的基因组选择和基因组选择相同,并且与选择的准确性无关。与不使用谱系信息(例如质量选择)而直接基于表型进行选择相比,基因组选择对响应的降低更大。为了在表型记录的数量受到限制时最大化基因组估计育种值的准确性,应该对同一个体进行表型和基因分型,而不是对父母进行基因分型并对其后代进行表型化。当无法通过基因组选择缩短世代间隔时,需要大的参考种群才能获得与基于基于自身性能或后代信息的BLUP估计育种值进行选择的相似反应。但是,当基因组选择方案在世代间隔上有适度减少时,需要相对较小的参考种群大小才能获得与传统BLUP估计育种值选择相似的响应。结论当无法在选择候选对象上记录感兴趣的性状时,即使表型记录的数量有限,基因组选择方案也很有吸引力,因为在这种情况下传统育种需要长间隔的子代测试方案。

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