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Genomic selection in plant breeding: from theory to practice

机译:植物育种中的基因组选择:从理论到实践

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摘要

We intuitively believe that the dramatic drop in the cost of DNA marker information we have experienced should have immediate benefits in accelerating the delivery of crop varieties with improved yield, quality and biotic and abiotic stress tolerance. But these traits are complex and affected by many genes, each with small effect. Traditional marker-assisted selection has been ineffective for such traits. The introduction of genomic selection ( GS), however, has shifted that paradigm. Rather than seeking to identify individual loci significantly associated with a trait, GS uses all marker data as predictors of performance and consequently delivers more accurate predictions. Selection can be based on GS predictions, potentially leading to more rapid and lower cost gains from breeding. The objectives of this article are to review essential aspects of GS and summarize the important take-home messages from recent theoretical, simulation and empirical studies. We then look forward and consider research needs surrounding methodological questions and the implications of GS for long-term selection.
机译:我们直觉上认为,我们所经历的DNA标记信息成本的急剧下降应该在提高产量,质量以及生物和非生物胁迫耐受性的情况下加快作物品种的交付方面具有直接的好处。但是这些特征很复杂,并且受许多基因的影响,每个基因的作用很小。传统的标记辅助选择对这种性状无效。然而,基因组选择(GS)的引入改变了这种模式。 GS并没有寻求识别与性状显着相关的单个基因座,而是使用所有标记数据作为性能的预测因子,因此提供了更准确的预测。选择可以基于GS预测,从而有可能从育种中获得更快,更低的成本收益。本文的目的是回顾GS的基本方面,并总结最近的理论,模拟和实证研究得出的重要结论。然后,我们展望并考虑围绕方法论问题的研究需求以及GS对于长期选择的意义。

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