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全基因组单核苷酸多态性和微卫星面板中连锁不平衡的评估及意义

Assessment and implications of linkage disequilibrium in genome-wide single-nucleotide polymorphism and microsatellite panels.

作者信息

Goode Ellen L, Jarvik Gail P

机构信息

Department of Health Sciences Research, Mayo Clinic College of Medicine, Rochester, Minnesota 55905, USA.

出版信息

Genet Epidemiol. 2005;29 Suppl 1:S72-6. doi: 10.1002/gepi.20112.

Abstract

Linkage disequilibrium (LD) between markers is more likely to exist in dense genome-wide single-nucleotide polymorphism (SNP) panels than in microsatellite panels. As part of Genetic Analysis Workshop 14 (GAW14), the extent of LD in the Illumina linkage panel III and the Affymetrix Genechip 10 K mapping array was assessed, using data from the Collaborative Study on the Genetics of Alcoholism (COGA). The impact of LD on linkage results was examined in COGA and simulated data, and characteristics of SNPs were assessed for their ability to detect population substructure and predict haplotypes. The authors of the papers summarized here observed greater LD in the Affymetrix than in the Illumina panel, possibly due to increased marker density in the Affymetrix panel, and found greater LD on chromosome X than on the autosomes. Simulation analyses suggest that intermarker LD can cause an upward bias in linkage statistics; however, the impact of LD on linkage analysis depends on the proportion of ungenotyped founders and the extent of LD. No large effect of LD on linkage peaks was observed in COGA analyses. In addition, the papers summarized here found that SNPs with high minor allele frequencies were the most informative compared with microsatellites for the detection of population substructure, and that SNPs in higher LD, and small numbers of SNPs, were the most reliable for haplotype prediction. As ease of genotyping continues to increase, study design and SNP selection for linkage and association studies (including genome-wide association studies) will be improved with consideration of LD in the particular populations studied.

摘要

与微卫星面板相比,标记之间的连锁不平衡(LD)在密集的全基因组单核苷酸多态性(SNP)面板中更有可能存在。作为遗传分析研讨会14(GAW14)的一部分,利用酒精中毒遗传学合作研究(COGA)的数据,评估了Illumina连锁面板III和Affymetrix Genechip 10 K映射阵列中的LD程度。在COGA和模拟数据中研究了LD对连锁结果的影响,并评估了SNP检测群体亚结构和预测单倍型的能力。此处总结的论文作者观察到,Affymetrix面板中的LD比Illumina面板中的更大,这可能是由于Affymetrix面板中标记密度增加所致,并且发现X染色体上的LD比常染色体上的更大。模拟分析表明,标记间LD可导致连锁统计出现向上偏差;然而,LD对连锁分析的影响取决于未分型奠基者的比例和LD的程度。在COGA分析中未观察到LD对连锁峰有较大影响。此外,此处总结的论文发现,与微卫星相比,具有高次要等位基因频率的SNP在检测群体亚结构方面信息最多,并且处于较高LD状态的SNP以及少量SNP在单倍型预测方面最可靠。随着基因分型的便捷性不断提高,在考虑所研究特定人群的LD的情况下,连锁和关联研究(包括全基因组关联研究)的研究设计和SNP选择将得到改进。

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