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Quantitative Trait Locus (QTL) Isogenic Recombinant Analysis: A Method for High-Resolution Mapping of QTL Within a Single Population

机译:数量性状基因座(QTL)等位基因重组分析:单种群内QTL高分辨率定位的一种方法

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摘要

In the quest for fine mapping quantitative trait loci (QTL) at a subcentimorgan scale, several methods that involve the construction of inbred lines and the generation of large progenies of such inbred lines have been developed (). Here we present an alternative method that significantly speeds up QTL fine mapping by using one segregating population. As a first step, a rough mapping analysis is performed on a small part of the population. Once the QTL have been mapped to a chromosomal interval by standard procedures, a large population of 1000 plants or more is analyzed with markers flanking the defined QTL to select QTL isogenic recombinants (QIRs). QIRs bear a recombination event in the QTL interval of interest, while other QTL have the same homozygous genotype. Only these QIRs are subsequently phenotyped to fine map the QTL. By focusing at an early stage on the informative individuals in the population only, the efforts in population genotyping and phenotyping are significantly reduced as compared to prior methods. The principles of this approach are demonstrated by fine mapping an erucic acid QTL of rapeseed at a subcentimorgan scale.
机译:为了寻求在亚下器官尺度上精细定位数量性状基因座(QTL)的方法,已经开发了几种方法,涉及自交系的构建和此类自交系的大后代的产生()。在这里,我们提出了一种替代方法,该方法通过使用一个隔离种群来显着加快QTL精细定位。第一步,对一小部分人口进行粗略的映射分析。一旦通过标准程序将QTL定位到染色体区间后,将用定义的QTL侧翼的标记分析1000株或更多植物的大种群,以选择QTL等基因重组体(QIR)。 QIR在感兴趣的QTL间隔内发生重组事件,而其他QTL具有相同的纯合基因型。随后仅对这些QIR进行表型分析以精确定位QTL。通过在早期只关注人群中的信息个体,与以前的方法相比,显着减少了人口基因型和表型方面的工作。该方法的原理通过在亚厘本尺度下精细绘制油菜籽的芥酸QTL来证明。

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