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Effect of advanced intercrossing on genome structure and on the power to detect linked quantitative trait loci in a multi-parent population: a simulation study in rice

机译:先进杂交对多亲群体中基因组结构的影响以及对连锁定量性状基因座的检测能力的模拟研究

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摘要

BackgroundIn genetic analysis of agronomic traits, quantitative trait loci (QTLs) that control the same phenotype are often closely linked. Furthermore, many QTLs are localized in specific genomic regions (QTL clusters) that include naturally occurring allelic variations in different genes. Therefore, linkage among QTLs may complicate the detection of each individual QTL. This problem can be resolved by using populations that include many potential recombination sites. Recently, multi-parent populations have been developed and used for QTL analysis. However, their efficiency for detection of linked QTLs has not received attention. By using information on rice, we simulated the construction of a multi-parent population followed by cycles of recurrent crossing and inbreeding, and we investigated the resulting genome structure and its usefulness for detecting linked QTLs as a function of the number of cycles of recurrent crossing.
机译:背景技术在农艺性状的遗传分析中,控制相同表型的数量性状基因座(QTL)通常紧密相连。此外,许多QTL位于特定的基因组区域(QTL簇)中,该基因组区域包括不同基因中自然发生的等位基因变异。因此,QTL之间的链接可能会使每个单独的QTL的检测复杂化。通过使用包含许多潜在重组位点的种群可以解决此问题。最近,已经开发了多父母人口并将其用于QTL分析。但是,其检测链接的QTL的效率尚未引起关注。通过利用水稻的信息,我们模拟了多亲种群的构建,然后进行了轮回杂交和近亲繁殖的周期,并研究了所得的基因组结构及其对检测连锁QTLs的作用,作为轮回杂交周期数的函数。

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