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Hum Hered. 2011;71(4):256-66. doi: 10.1159/000329467. Epub 2011 Jul 28.
2
Linkage analysis in the presence of errors IV: joint pseudomarker analysis of linkage and/or linkage disequilibrium on a mixture of pedigrees and singletons when the mode of inheritance cannot be accurately specified.存在错误情况下的连锁分析IV:当遗传模式无法准确确定时,对家系和单病例混合样本进行连锁和/或连锁不平衡的联合伪标记分析
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3
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Joint Linkage and Association Analysis Using GENEHUNTER-MODSCORE with an Application to Familial Pancreatic Cancer.使用 GENEHUNTER-MODSCORE 进行联合连锁和关联分析及其在家族性胰腺癌中的应用。
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Improved methods for multi-trait fine mapping of pleiotropic risk loci.多效性风险位点多性状精细定位的改进方法。
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Construction of high-quality recombination maps with low-coverage genomic sequencing for joint linkage analysis in maize.利用低覆盖度基因组测序构建高质量重组图谱用于玉米的联合连锁分析
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Am J Hum Genet. 2009 Nov;85(5):667-78. doi: 10.1016/j.ajhg.2009.10.006.
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Combined linkage and linkage disequilibrium mapping for genome screens.用于基因组筛选的联合连锁和连锁不平衡定位
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mixIndependR: a R package for statistical independence testing of loci in database of multi-locus genotypes.mixIndependR:一个用于在多基因座基因型数据库中测试基因座统计独立性的 R 包。
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The melanocortin receptor genes are linked to and associated with the risk of polycystic ovary syndrome in Italian families.在意大利家庭中,黑皮质素受体基因与多囊卵巢综合征的风险相关联。
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Digenic inheritance involving a muscle-specific protein kinase and the giant titin protein causes a skeletal muscle myopathy.双基因遗传涉及肌肉特异性蛋白激酶和巨大的肌联蛋白,导致骨骼肌肌病。
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Linkage analysis using whole exome sequencing data implicates SLC17A1, SLC17A3, TATDN2 and TMEM131L in type 1 diabetes in Kuwaiti families.全外显子组测序数据的连锁分析提示 SLC17A1、SLC17A3、TATDN2 和 TMEM131L 基因与科威特家族性 1 型糖尿病相关。
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Novel Risk Variants in the Oxytocin Receptor Gene () Possibly Linked to and Associated with Familial Type 2 Diabetes.催产素受体基因()中的新型风险变异体可能与家族性 2 型糖尿病有关联。
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本文引用的文献

1
On the statistical properties of family-based association tests in datasets containing both pedigrees and unrelated case-control samples.基于家系和无关病例对照样本数据集的基于家族的关联检验的统计特性。
Eur J Hum Genet. 2012 Feb;20(2):217-23. doi: 10.1038/ejhg.2011.173. Epub 2011 Sep 21.
2
Update to Terwilliger and Göring's "Gene mapping in the 20th and 21st centuries" (2000): gene mapping when rare variants are common and common variants are rare.特威利格和戈林所著《20世纪和21世纪的基因定位》(2000年)的更新内容:当罕见变异常见而常见变异罕见时的基因定位
Hum Biol. 2009 Dec;81(5-6):729-33. doi: 10.3378/027.081.0617.
3
ForSim: a tool for exploring the genetic architecture of complex traits with controlled truth.ForSim:一种用于探索具有可控真值的复杂性状遗传结构的工具。
Bioinformatics. 2008 Aug 15;24(16):1821-2. doi: 10.1093/bioinformatics/btn317. Epub 2008 Jun 19.
4
Likelihood-based association analysis for nuclear families and unrelated subjects with missing genotype data.针对有缺失基因型数据的核心家庭和无关个体的基于似然性的关联分析。
Hum Hered. 2008;66(2):87-98. doi: 10.1159/000119108. Epub 2008 Mar 31.
5
PLINK: a tool set for whole-genome association and population-based linkage analyses.PLINK:一个用于全基因组关联分析和基于群体的连锁分析的工具集。
Am J Hum Genet. 2007 Sep;81(3):559-75. doi: 10.1086/519795. Epub 2007 Jul 25.
6
Efficient study designs for test of genetic association using sibship data and unrelated cases and controls.利用同胞数据以及非亲缘病例与对照进行基因关联测试的高效研究设计。
Am J Hum Genet. 2006 May;78(5):778-792. doi: 10.1086/503711. Epub 2006 Mar 20.
7
PedGenie: an analysis approach for genetic association testing in extended pedigrees and genealogies of arbitrary size.PedGenie:一种用于任意规模扩展家系和族谱中基因关联测试的分析方法。
BMC Bioinformatics. 2006 Apr 18;7:209. doi: 10.1186/1471-2105-7-209.
8
Joint modeling of linkage and association: identifying SNPs responsible for a linkage signal.连锁与关联的联合建模:识别导致连锁信号的单核苷酸多态性
Am J Hum Genet. 2005 Jun;76(6):934-49. doi: 10.1086/430277. Epub 2005 Apr 5.
9
Mega2: data-handling for facilitating genetic linkage and association analyses.Mega2:用于促进基因连锁和关联分析的数据处理
Bioinformatics. 2005 May 15;21(10):2556-7. doi: 10.1093/bioinformatics/bti364. Epub 2005 Mar 3.
10
Chromosome 19p13 loci in Finnish migraine with aura families.芬兰伴有先兆偏头痛家系中的19号染色体p13位点
Am J Med Genet B Neuropsychiatr Genet. 2005 Jan 5;132B(1):85-9. doi: 10.1002/ajmg.b.30082.

伪标记:一个用于对单倍型个体和相关个体混合物进行联合连锁和/或连锁不平衡分析的强大程序。

PSEUDOMARKER: a powerful program for joint linkage and/or linkage disequilibrium analysis on mixtures of singletons and related individuals.

作者信息

Hiekkalinna Tero, Schäffer Alejandro A, Lambert Brian, Norrgrann Petri, Göring Harald H H, Terwilliger Joseph D

机构信息

Institute for Molecular Medicine Finland (FIMM), University of Helsinki. tero.hiekkalinna @ helsinki.fi

出版信息

Hum Hered. 2011;71(4):256-66. doi: 10.1159/000329467. Epub 2011 Jul 28.

DOI:10.1159/000329467
PMID:21811076
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3190175/
Abstract

A decade ago, there was widespread enthusiasm for the prospects of genome-wide association studies to identify common variants related to common chronic diseases using samples of unrelated individuals from populations. Although technological advancements allow us to query more than a million SNPs across the genome at low cost, a disappointingly small fraction of the genetic portion of common disease etiology has been uncovered. This has led to the hypothesis that less frequent variants might be involved, stimulating a renaissance of the traditional approach of seeking genes using multiplex families from less diverse populations. However, by using the modern genotyping and sequencing technology, we can now look not just at linkage, but jointly at linkage and linkage disequilibrium (LD) in such samples. Software methods that can look simultaneously at linkage and LD in a powerful and robust manner have been lacking. Most algorithms cannot jointly analyze datasets involving families of varying structures in a statistically or computationally efficient manner. We have implemented previously proposed statistical algorithms in a user-friendly software package, PSEUDOMARKER. This paper is an announcement of this software package. We describe the motivation behind the approach, the statistical methods, and software, and we briefly demonstrate PSEUDOMARKER's advantages over other packages by example.

摘要

十年前,人们对全基因组关联研究的前景满怀热情,希望利用来自人群的非亲属个体样本,识别与常见慢性病相关的常见变异。尽管技术进步使我们能够低成本地对基因组中的一百多万个单核苷酸多态性(SNP)进行检测,但在常见疾病病因的遗传因素中,仅有一小部分被发现,令人失望。这引发了一种假说,即可能涉及频率更低的变异,从而促使人们复兴传统方法,利用来自多样性较低人群的多重家系来寻找基因。然而,借助现代基因分型和测序技术,我们现在不仅可以研究连锁关系,还能同时研究此类样本中的连锁不平衡(LD)。此前一直缺乏能够高效且稳健地同时研究连锁和连锁不平衡的软件方法。大多数算法无法以统计或计算高效的方式联合分析包含不同结构家系的数据集。我们已将先前提出的统计算法实现为一个用户友好的软件包PSEUDOMARKER。本文旨在介绍这个软件包。我们阐述了该方法背后的动机、统计方法和软件,并通过示例简要展示了PSEUDOMARKER相对于其他软件包的优势。