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Toward fully automated genotyping: allele assignment, pedigree construction, phase determination, and recombination detection in Duchenne muscular dystrophy.迈向全自动化基因分型:杜氏肌营养不良症中的等位基因分配、系谱构建、相位确定和重组检测
Am J Hum Genet. 1994 Oct;55(4):777-87.
2
Carrier detection and prenatal diagnosis in Duchenne and Becker muscular dystrophy families, using dinucleotide repeat polymorphisms.利用二核苷酸重复多态性对杜氏和贝克型肌营养不良家族进行携带者检测和产前诊断。
Am J Hum Genet. 1991 Nov;49(5):951-60.
3
Carrier detection in Duchenne and Becker muscular dystrophy using dinucleotide repeat polymorphisms. A study in Mexican families.
Arch Med Res. 1996 Summer;27(2):151-6.
4
Linkage disequilibria among (CA)n polymorphisms in the human dystrophin gene and their implications in carrier detection and prenatal diagnosis in Duchenne and Becker muscular dystrophies.
Genomics. 1994 Jun;21(3):567-70. doi: 10.1006/geno.1994.1315.
5
Usefulness of dinucleotide polymorphism markers in genetic analysis of Duchenne's muscular dystrophy cases in Singapore.二核苷酸多态性标记物在新加坡杜氏肌营养不良症病例基因分析中的应用价值。
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Fluorescent multiplex linkage analysis and carrier detection for Duchenne/Becker muscular dystrophy.杜兴/贝克型肌营养不良症的荧光多重连锁分析及携带者检测
Am J Hum Genet. 1992 Oct;51(4):721-9.
7
The role of polymorphic short tandem (CA)n repeat loci segregation analysis in the detection of Duchenne muscular dystrophy carriers and prenatal diagnosis.多态性短串联(CA)n重复序列位点分离分析在杜氏肌营养不良症携带者检测及产前诊断中的作用。
Mol Diagn. 2005;9(2):67-80. doi: 10.1007/BF03260074.
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Usefulness of a CACA repeat polymorphism in genotype assignments in Duchenne/Becker muscular dystrophy.
Am J Med Genet. 1992 Nov 1;44(4):473-6. doi: 10.1002/ajmg.1320440417.
9
Detection of Duchenne and Becker muscular dystrophy carriers by quantitative multiplex polymerase chain reaction analysis.通过定量多重聚合酶链反应分析检测杜氏和贝克型肌营养不良症携带者
Neurology. 1992 Sep;42(9):1783-90. doi: 10.1212/wnl.42.9.1783.
10
[Carrier and prenatal diagnosis of Duchenne and Becker muscular dystrophy by PCR methods].[采用聚合酶链反应方法进行杜兴氏和贝克氏肌肉营养不良症的携带者及产前诊断]
Nihon Rinsho. 1993 Sep;51(9):2428-34.

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Novel algorithm for automated genotyping of microsatellites.用于微卫星自动基因分型的新型算法。
Nucleic Acids Res. 2004 Nov 19;32(20):6069-77. doi: 10.1093/nar/gkh946. Print 2004.
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A novel method for automatic genotyping of microsatellite markers based on parametric pattern recognition.
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Toward high-throughput genotyping: dynamic and automatic software for manipulating large-scale genotype data using fluorescently labeled dinucleotide markers.迈向高通量基因分型:使用荧光标记二核苷酸标记物处理大规模基因型数据的动态自动化软件。
Genome Res. 2001 Jul;11(7):1304-14. doi: 10.1101/gr.159701.
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8
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Efficient construction of high-resolution physical maps from yeast artificial chromosomes using radiation hybrids: inner product mapping.
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The Evolving Genome Project: current and future impact.不断发展的基因组计划:当前及未来的影响
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Automated construction of genetic linkage maps using an expert system (MultiMap): a human genome linkage map.使用专家系统(MultiMap)自动构建遗传连锁图谱:人类基因组连锁图谱。
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Complete cloning of the Duchenne muscular dystrophy (DMD) cDNA and preliminary genomic organization of the DMD gene in normal and affected individuals.杜兴氏肌营养不良症(DMD)cDNA的完整克隆以及正常个体和患病个体中DMD基因的初步基因组结构
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A 10-megabase physical map of human Xp21, including the Duchenne muscular dystrophy gene.人类Xp21的一个10兆碱基物理图谱,包括杜氏肌营养不良基因。
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A deductive method of haplotype analysis in pedigrees.系谱中单体型分析的演绎方法。
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Abundant class of human DNA polymorphisms which can be typed using the polymerase chain reaction.可通过聚合酶链反应进行分型的大量人类DNA多态性类别。
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Rapid detection of CA polymorphisms in cloned DNA: application to the 5' region of the dystrophin gene.克隆DNA中CA多态性的快速检测:应用于肌营养不良蛋白基因的5'区域。
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A polymorphic CACA repeat in the 3' untranslated region of dystrophin.肌营养不良蛋白3'非翻译区的一个多态性CACA重复序列。
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迈向全自动化基因分型:杜氏肌营养不良症中的等位基因分配、系谱构建、相位确定和重组检测

Toward fully automated genotyping: allele assignment, pedigree construction, phase determination, and recombination detection in Duchenne muscular dystrophy.

作者信息

Perlin M W, Burks M B, Hoop R C, Hoffman E P

机构信息

School of Computer Science, Carnegie Mellon University, Pittsburgh, PA 15213.

出版信息

Am J Hum Genet. 1994 Oct;55(4):777-87.

PMID:7942856
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1918281/
Abstract

Human genetic maps have made quantum leaps in the past few years, because of the characterization of > 2,000 CA dinucleotide repeat loci: these PCR-based markers offer extraordinarily high PIC, and within the next year their density is expected to reach intervals of a few centimorgans per marker. These new genetic maps open new avenues for disease gene research, including large-scale genotyping for both simple and complex disease loci. However, the allele patterns of many dinucleotide repeat loci can be complex and difficult to interpret, with genotyping errors a recognized problem. Furthermore, the possibility of genotyping individuals at hundreds or thousands of polymorphic loci requires improvements in data handling and analysis. The automation of genotyping and analysis of computer-derived haplotypes would remove many of the barriers preventing optimal use of dense and informative dinucleotide genetic maps. Toward this end, we have automated the allele identification, genotyping, phase determinations, and inheritance consistency checks generated by four CA repeats within the 2.5-Mbp, 10-cM X-linked dystrophin gene, using fluorescein-labeled multiplexed PCR products analyzed on automated sequencers. The described algorithms can deconvolute and resolve closely spaced alleles, despite interfering stutter noise; set phase in females; propagate the phase through the family; and identify recombination events. We show the implementation of these algorithms for the completely automated interpretation of allele data and risk assessment for five Duchenne/Becker muscular dystrophy families. The described approach can be scaled up to perform genome-based analyses with hundreds or thousands of CA-repeat loci, using multiple fluorophors on automated sequencers.

摘要

在过去几年中,人类基因图谱取得了巨大飞跃,这得益于对2000多个CA二核苷酸重复位点的表征:这些基于聚合酶链反应(PCR)的标记物具有极高的多态信息含量(PIC),预计在明年其密度将达到每个标记物间隔几厘摩。这些新的基因图谱为疾病基因研究开辟了新途径,包括对简单和复杂疾病位点进行大规模基因分型。然而,许多二核苷酸重复位点的等位基因模式可能很复杂且难以解读,基因分型错误是一个公认的问题。此外,对数百个或数千个多态性位点的个体进行基因分型,需要改进数据处理和分析。基因分型和计算机推导单倍型分析的自动化将消除许多阻碍充分利用密集且信息丰富的二核苷酸基因图谱的障碍。为此,我们利用在自动测序仪上分析的荧光素标记多重PCR产物,实现了对位于2.5兆碱基对、10厘摩的X连锁肌营养不良蛋白基因内的四个CA重复序列所产生的等位基因识别、基因分型、相位确定和遗传一致性检查的自动化。所描述的算法能够解卷积并分辨紧密间隔的等位基因,尽管存在干扰性的拖尾噪声;确定女性的相位;在家族中传递相位;并识别重组事件。我们展示了这些算法在五个杜兴/贝克型肌营养不良家族的等位基因数据全自动解读和风险评估中的应用。所描述的方法可以扩大规模,使用自动测序仪上的多种荧光染料,对数百个或数千个CA重复位点进行基于基因组的分析。