首页> 外文期刊>Journal of Medical Genetics >Karyomapping: a universal method for genome wide analysis of genetic disease based on mapping crossovers between parental haplotypes.
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Karyomapping: a universal method for genome wide analysis of genetic disease based on mapping crossovers between parental haplotypes.

机译:核定图:一种基于亲本单倍型之间的杂交图谱分析遗传疾病的全基因组通用方法。

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The use of genome wide single nucleotide polymorphism (SNP) arrays for high resolution molecular cytogenetic analysis using a combination of quantitative and genotype analysis is well established. This study demonstrates that by Mendelian analysis of the SNP genotypes of the parents and a sibling or other appropriate family member to establish phase, it is possible to identify informative loci for each of the four parental haplotypes across each chromosome and map the inheritance of these haplotypes and the position of any crossovers in the proband. The resulting 'karyomap', unlike a karyotype, identifies the parental and grandparental origin of each chromosome and chromosome segment and is unique for every individual being defined by the independent segregation of parental chromosomes and the pattern of non-recombinant and recombinant chromosomes. Karyomapping, therefore, enables both genome wide linkage based analysis of inheritance and detection of chromosome imbalance where either both haplotypes from one parent are present (trisomy) or neither are present (monosomy/deletion). The study also demonstrates that karyomapping is possible at the single cell level following whole genome amplification and, without any prior patient or disease specific test development, provides a universal linkage based methodology for preimplantation genetic diagnosis readily available worldwide.
机译:使用定量和基因型分析相结合的全基因组单核苷酸多态性(SNP)阵列进行高分辨率分子细胞遗传学分析已广为人知。这项研究表明,通过孟德尔对父母和同胞或其他合适家庭成员的SNP基因型的分析,可以确定每个染色体上四个父母单倍型的信息丰富的基因座,并绘制这些单倍型的遗传图谱以及任何交叉点在先证者中的位置。与核型不同,生成的“核型图”可识别每个染色体和染色体片段的亲本和祖父母起源,并且对于每个由亲本染色体的独立分离以及非重组和重组染色体模式定义的个体而言都是唯一的。因此,Karyomapping支持基于全基因组连锁的遗传分析和染色体不平衡检测,其中来自一个亲本的两个单倍型都存在(三体性)或都不存在(单体性/缺失)。这项研究还表明,在全基因组扩增后,在单个细胞水平上进行核定图是可能的,并且无需任何先前的针对患者或疾病的特定测试开发,就可以为全世界提供的基于植入前遗传学诊断的通用链接方法。

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