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Mapping QTLs with main and epistatic effects underlying grain yield and heading time in soft winter wheat

机译:绘制软小麦冬小麦产量和抽穗期的主要和上位效应的QTL图谱

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摘要

There is increasing awareness that epistasis plays a role for the determination of complex traits. This study employed an association mapping approach in a large panel of 455 diverse European elite soft winter wheat lines. The genotypes were evaluated in multi-environment trials and fingerprinted with SSR markers to dissect the underlying genetic architecture of grain yield and heading time. A linear mixed model was applied to assess marker-trait associations incorporating information of covariance among relatives. Our findings indicate that main effects dominate the control of grain yield in wheat. In contrast, the genetic architecture underlying heading time is controlled by main and epistatic effects. Consequently, for heading time it is important to consider epistatic effects towards an increased selection gain in marker-assisted breeding.
机译:人们越来越认识到上位性在确定复杂性状中起着重要作用。这项研究在455种不同的欧洲精英软冬小麦品系中使用了关联映射方法。在多环境试验中对基因型进行了评估,并用SSR标记进行了指纹分析,以剖析潜在的谷物产量和抽穗时间的遗传结构。应用线性混合模型评估标记-性状关联,并结合亲戚之间的协方差信息。我们的发现表明,主要作用主导了小麦籽粒产量的控制。相反,潜航时间背后的遗传结构受主要和上位性效应控制。因此,对于抽穗时间,重要的是要考虑上位效应对标记辅助育种中增加选择增益的影响。

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  • 来源
    《Theoretical and Applied Genetics 》 |2011年第2期| 283-292| 共10页
  • 作者单位

    State Plant Breeding Institute University of Hohenheim 70599 Stuttgart Germany;

    State Plant Breeding Institute University of Hohenheim 70599 Stuttgart Germany;

    KWS Lochow GMBH 29303 Bergen Germany;

    KWS Lochow GMBH 29303 Bergen Germany;

    State Plant Breeding Institute University of Hohenheim 70599 Stuttgart Germany;

    State Plant Breeding Institute University of Hohenheim 70599 Stuttgart Germany;

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