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首页> 外文期刊>Theoretical and Applied Genetics >Application of a new IBD-based QTL mapping method to common wheat breeding population: analysis of kernel hardness and dough strength
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Application of a new IBD-based QTL mapping method to common wheat breeding population: analysis of kernel hardness and dough strength

机译:基于IBD的新QTL定位方法在普通小麦育种群体中的应用:籽粒硬度和面团强度的分析

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摘要

Mapping quantitative trait loci (QTL) in plants is usually conducted using a population derived from a cross between two inbred lines. The power of such QTL detection and the estimation of the effects highly depend on the choice of the two parental lines. Thus, the QTL found represent only a small part of the genetic architecture and can be of limited economical interest in marker-assisted selection. On the other hand, applied breeding programmes evaluate large numbers of progeny derived from multiple-related crosses for a wide range of agronomic traits. It is assumed that the development of statistical techniques to deal with pedigrees in existing plant populations would increase the relevance and cost effectiveness of QTL mapping in a breeding context. In this study, we applied a two-step IBD-based-variance component method to a real wheat breeding population, composed of 374 F6 lines derived from 80 different parents. Two bread wheat quality related traits were analysed by the method. Results obtained show very close agreement with major genes and QTL already known for those two traits. With this new QTL mapping strategy, inferences about QTL can be drawn across the breeding programme rather than being limited to the sample of progeny from a single cross and thus the use of the detected QTL in assisting breeding would 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(QTL)。这种QTL检测的能力和影响的估计高度取决于两条亲本系的选择。因此,发现的QTL仅代表遗传结构的一小部分,并且在标记辅助选择中可能具有有限的经济利益。另一方面,应用育种计划评估了来自多种相关杂交的大量后代,具有广泛的农艺性状。假定开发用于处理现有植物种群中系谱的统计技术将在育种环境中提高QTL定位的相关性和成本效益。在这项研究中,我们将两步基于IBD的方差分量方法应用于真实的小麦育种种群,该种群由来自80个不同亲本的374个F6 品系组成。通过该方法分析了两个面包小麦品质相关性状。获得的结果表明,与已经知道这两个性状的主要基因和QTL非常接近。使用这种新的QTL定位策略,可以在整个育种程序中得出有关QTL的推论,而不仅限于一次杂交的后代样本,因此将有利于利用检测到的QTL辅助育种。

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