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True and false positive peaks in genomewide scans: applications of length-biased sampling to linkage mapping.

机译:全基因组扫描中的真假阳性峰:将长度偏倚的采样应用于连锁图谱。

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摘要

Disease-susceptibility loci are now being mapped via genomewide scans in which a linkage statistic is computed at each of a large number of markers. Such disease-susceptibility loci may be identified via a peak in the test statistic when the latter is plotted against the genetic map. In this paper we establish, by appealing to renewal theory, that true positive peaks are expected to be longer than false positive peaks. These results are verified by a realistic simulation of a genomewide linkage study based on the affected-sib-pair design. Since longer peaks are more likely to contain a gene of interest than are shorter peaks, these differences may aid in linkage mapping, justifying assignment of lower priority to shorter peaks. However, since these differences are generally small, statistics based on both peak length and height may not be much more powerful than those based on height alone. The results presented here also provide a theoretical framework for methods that use the length of shared haplotypes in populations to map disease genes.
机译:现在正在通过全基因组扫描来绘制疾病易感性基因座,其中在大量标记的每个标记处计算连锁统计。当相对于遗传图谱绘制测试统计数据时,可以通过测试统计数据中的峰来识别这种疾病易感性基因座。在本文中,我们通过引用更新理论来确定,期望真实的正峰值比错误的正峰值更长。这些结果通过基于受影响的同胞对设计的全基因组连锁研究的真实模拟得到验证。由于较长的峰比较短的峰更有可能包含目标基因,因此这些差异可能有助于连锁映射,从而将较低优先级分配给较短的峰是合理的。但是,由于这些差异通常很小,因此基于峰长和峰高的统计可能不会比仅基于峰高的统计强大得多。此处提供的结果也为使用群体中共有单倍型的长度绘制疾病基因图谱的方法提供了理论框架。

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