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高阶连锁不平衡与上位性之间的关系

On the Relationship Between High-Order Linkage Disequilibrium and Epistasis.

作者信息

Zan Yanjun, Forsberg Simon K G, Carlborg Örjan

机构信息

Department of Medical Biochemistry and Microbiology, Uppsala University, SE-751 23 Uppsala, Sweden.

Department of Medical Biochemistry and Microbiology, Uppsala University, SE-751 23 Uppsala, Sweden

出版信息

G3 (Bethesda). 2018 Jul 31;8(8):2817-2824. doi: 10.1534/g3.118.200513.

Abstract

A plausible explanation for statistical epistasis revealed in genome wide association analyses is the presence of high order linkage disequilibrium (LD) between the genotyped markers tested for interactions and unobserved functional polymorphisms. Based on findings in experimental data, it has been suggested that high order LD might be a common explanation for statistical epistasis inferred between local polymorphisms in the same genomic region. Here, we empirically evaluate how prevalent high order LD is between local, as well as distal, polymorphisms in the genome. This could provide insights into whether we should account for this when interpreting results from genome wide scans for statistical epistasis. An extensive and strong genome wide high order LD was revealed between pairs of markers on the high density 250k SNP-chip and individual markers revealed by whole genome sequencing in the 1001-genomes collection. The high order LD was found to be more prevalent in smaller populations, but present also in samples including several hundred individuals. An empirical example illustrates that high order LD might be an even greater challenge in cases when the genetic architecture is more complex than the common assumption of bi-allelic loci. The example shows how significant statistical epistasis is detected for a pair of markers in high order LD with a complex multi allelic locus. Overall, our study illustrates the importance of considering also other explanations than functional genetic interactions when genome wide statistical epistasis is detected, in particular when the results are obtained in small populations of inbred individuals.

摘要

对于全基因组关联分析中揭示的统计上位性,一个合理的解释是,用于检测相互作用的基因分型标记与未观察到的功能多态性之间存在高阶连锁不平衡(LD)。基于实验数据中的发现,有人提出高阶LD可能是同一基因组区域内局部多态性之间推断出的统计上位性的常见解释。在此,我们通过实证评估基因组中局部以及远端多态性之间高阶LD的普遍程度。这可以为我们在解释全基因组统计上位性扫描结果时是否应考虑这一点提供见解。在高密度250k SNP芯片上的标记对与1001基因组集合中通过全基因组测序揭示的单个标记之间,发现了广泛且强烈的全基因组高阶LD。高阶LD在较小群体中更为普遍,但在包括数百个个体的样本中也存在。一个实证例子表明,当遗传结构比双等位基因位点的常见假设更复杂时,高阶LD可能是一个更大的挑战。该例子展示了如何在与一个复杂的多等位基因位点处于高阶LD的一对标记中检测到显著的统计上位性。总体而言,我们的研究表明,在检测到全基因组统计上位性时,尤其是在近交个体的小群体中获得结果时,除了功能基因相互作用之外,考虑其他解释也很重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/42da/6071592/063ba12f08c6/2817f1.jpg

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