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探索复杂疾病中潜在连锁区域的密集图谱:以多发性硬化症为例。

Exploring the dense mapping of a region of potential linkage in complex disease: an example in multiple sclerosis.

作者信息

Feakes R, Sawcer S, Chataway J, Coraddu F, Broadley S, Gray J, Jones H B, Clayton D, Goodfellow P N, Compston A

机构信息

University of Cambridge Neurology Unit, Addenbrooke's Hospital, United Kingdom.

出版信息

Genet Epidemiol. 1999;17(1):51-63. doi: 10.1002/(SICI)1098-2272(1999)17:1<51::AID-GEPI4>3.0.CO;2-V.

Abstract

In 1996 we reported the results of a genome screen in multiple sclerosis, in which potential linkage was identified in a total of twenty regions, including the centromeric region of chromosome 5. In order to investigate the efficiency of typing dense arrays of markers in regions of potential linkage, we have typed an additional nineteen microsatellite markers from this chromosome 5 region (D5S623 - D5S428) in the same sibling pair families. The mean additional information extracted per marker typed declined with increasing map density, while inaccuracies in the mapping and the density of genotyping errors increased. Our empirical results suggest that, in linkage-based experiments, there is a limit to the benefits that are gained from typing additional markers in the same families. Increasing map density up to the 2.5-5 cM level efficiently extracts valuable extra information; however, beyond this level efficiency declines while the confounding effects of mapping and genotyping errors accumulate. We, therefore, recommend that extra markers typed in linkage studies be limited to this level of resolution. Mapping regions beyond this density should only be initiated when searching for linkage disequilibrium.

摘要

1996年,我们报告了一项多发性硬化症基因组筛查的结果,其中在总共20个区域发现了潜在的连锁关系,包括5号染色体的着丝粒区域。为了研究在潜在连锁区域对密集标记阵列进行分型的效率,我们在同一同胞对家族中对来自该5号染色体区域(D5S623 - D5S428)的另外19个微卫星标记进行了分型。每个分型标记提取的平均额外信息随着图谱密度的增加而下降,而图谱绘制中的不准确之处以及基因分型错误的密度则增加。我们的实证结果表明,在基于连锁的实验中,在同一家族中对额外标记进行分型所获得的益处存在一个限度。将图谱密度提高到2.5 - 5厘摩水平能有效地提取有价值的额外信息;然而,超过这个水平效率就会下降,同时图谱绘制和基因分型错误的混杂效应会累积。因此,我们建议在连锁研究中分型的额外标记应限于这个分辨率水平。只有在寻找连锁不平衡时才应启动超过这个密度的区域图谱绘制。

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