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Consequences of recombination rate variation on quantitative trait locus mapping studies. Simulations based on the Drosophila melanogaster genome.

机译:重组率变化对定量性状基因座图谱研究的后果。基于果蝇果蝇基因组的模拟。

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摘要

We examine the effect of variation in gene density per centimorgan on quantitative trait locus (QTL) mapping studies using data from the Drosophila melanogaster genome project and documented regional rates of recombination. There is tremendous variation in gene density per centimorgan across this genome, and we observe that this variation can cause systematic biases in QTL mapping studies. Specifically, in our simulated mapping experiments of 50 equal-effect QTL distributed randomly across the physical genome, very strong QTL are consistently detected near the centromeres of the two major autosomes, and few or no QTL are often detected on the X chromosome. This pattern persisted with varying heritability, marker density, QTL effect sizes, and transgressive segregation. Our results are consistent with empirical data collected from QTL mapping studies of this species and its close relatives, and they explain the "small X-effect" that has been documented in genetic studies of sexual isolation in the D. melanogaster group. Because of the biases resulting from recombination rate variation, results of QTL mapping studies should be taken as hypotheses to be tested by additional genetic methods, particularly in species for which detailed genetic and physical genome maps are not available.
机译:我们使用果蝇果蝇基因组计划的数据并记录了区域重组率,研究了百分百基因密度变化对定量性状基因座(QTL)作图研究的影响。在整个基因组中,百分数的基因密度存在巨大差异,我们观察到这种差异可能会导致QTL定位研究出现系统性偏差。具体而言,在我们模拟的50个等效QTL在整个物理基因组中随机分布的模拟作图实验中,在两个主要常染色体的着丝粒附近始终检测到非常强的QTL,并且在X染色体上经常检测到很少或没有QTL。这种模式持续存在着不同的遗传力,标记密度,QTL效应大小和侵略性分离。我们的结果与从该物种及其近亲的QTL定位研究收集的经验数据一致,并且它们解释了D. melanogaster组中性隔离基因研究中已记录的“小X效应”。由于重组率变化导致的偏倚,应将QTL定位研究的结果作为假设,通过其他遗传方法进行测试,尤其是在无法获得详细遗传和物理基因组图谱的物种中。

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