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Quantitative Trait Loci (QTL) Detection in Multicross Inbred Designs: Recovering QTL Identical-by-Descent Status Information From Marker Data

机译:多杂交近交设计中的数量性状位点(QTL)检测:从标记数据中恢复QTL相同的后裔状态信息

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摘要

Mapping quantitative trait loci in plants is usually conducted using a population derived from a cross between two inbred lines. The power of such QTL detection and the parameter estimates depend largely on the choice of the two parental lines. Thus, the QTL detected in such populations represent only a small part of the genetic architecture of the trait. In addition, the effects of only two alleles are characterized, which is of limited interest to the breeder, while common pedigree breeding material remains unexploited for QTL mapping. In this study, we extend QTL mapping methodology to a generalized framework, based on a two-step IBD variance component approach, applicable to any type of breeding population obtained from inbred parents. We then investigate with simulated data mimicking conventional breeding programs the influence of different estimates of the IBD values on the power of QTL detection. The proposed method would provide an alternative to the development of specifically designed recombinant populations, by utilizing the genetic variation actually managed by plant breeders. The use of these detected QTL in assisting breeding would thus be facilitated.
机译:通常使用来自两个自交系之间杂交的群体来绘制植物中的数量性状基因座。这种QTL检测和参数估计的能力在很大程度上取决于两条亲本线的选择。因此,在此类种群中检测到的QTL仅占该性状遗传结构的一小部分。此外,仅表征了两个等位基因的作用,这对育种者的兴趣有限,而普通谱系育种材料仍未用于QTL作图。在这项研究中,我们基于两步IBD方差分量方法,将QTL映射方法扩展到一个通用的框架,适用于从近交亲本获得的任何类型的繁殖群体。然后,我们使用模仿常规育种程序的模拟数据进行调查,研究了IBD值的不同估计对QTL检测能力的影响。通过利用植物育种者实际管理的遗传变异,提出的方法将为开发专门设计的重组种群提供替代方法。这些检测到的QTL在辅助育种中的使用将因此得到促进。

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