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Analysis of pathogenic variants from the ClinVar database in healthy people using next-generation sequencing

机译:利用下一代测序分析了健康人群中临床数据库的致病变种

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摘要

Next-generation sequencing (NGS) became an effective approach for finding novel causative genomic variants of genetic disorders and is increasingly used for diagnostic purposes. Public variant databases that gather data of pathogenic variants are being relied upon as a source for clinical diagnosis. However, research of pathogenic variants using public databases data could be carried out not only in patients, but also in healthy people. This could provide insights into the most common recessive disorders in populations. The study aim was to use NGS and data from the ClinVar database for the identification of pathogenic variants in the exomes of healthy individuals from the Lithuanian population. To achieve this, 96 exomes were sequenced. An average of 42 139 single-nucleotide variants (SNVs) and 2306 short INDELs were found in each individual exome. Pooled data of study exomes provided a total of 243 192 unique SNVs and 31 623 unique short INDELs. Three hundred and twenty-one unique SNVs were classified as pathogenic. Comparison of the European data from the 1000 Genomes Project with our data revealed five pathogenic genomic variants that are inherited in an autosomal recessive pattern and that statistically significantly differ from the European population data.
机译:下一代测序(NGS)成为寻找遗传紊乱的新致病基因组变体的有效方法,越来越多地用于诊断目的。收集致病变体数据的公共变体数据库被依赖于临床诊断的来源。然而,使用公共数据库数据的致病变体的研究不仅可以在患者中进行,也可以在健康的人中进行。这可以为人群中最常见的隐性障碍提供见解。该研究目的是使用Clarvar数据库中的NGS和数据来确定来自立陶宛人群的健康个体展开的致病变异。为实现这一点,测序96个凸形。在每个外列时,平均42139个单核苷酸变体(SNV)和2306个短诱导。汇总的研究展示数据提供了共有243个192个独特的SNV和31 623个独特的短夹型。三百二十一个独特的SNV被归类为致病性。从1000个基因组项目的欧洲数据与我们的数据进行比较揭示了五种致病基因组变体,其遗传到常染色体隐性模式,并且与欧洲人口数据有统计学显着不同。

著录项

  • 来源
    《Genetics Research》 |2017年第2017期|共5页
  • 作者单位

    Vilnius Univ Dept Human &

    Med Genet Fac Med Santariskiu 2 LT-08661 Vilnius Lithuania;

    Vilnius Univ Dept Human &

    Med Genet Fac Med Santariskiu 2 LT-08661 Vilnius Lithuania;

    Vilnius Univ Dept Human &

    Med Genet Fac Med Santariskiu 2 LT-08661 Vilnius Lithuania;

    Vilnius Univ Dept Human &

    Med Genet Fac Med Santariskiu 2 LT-08661 Vilnius Lithuania;

    Vilnius Univ Dept Human &

    Med Genet Fac Med Santariskiu 2 LT-08661 Vilnius Lithuania;

    Vilnius Univ Fac Med Dept Physiol Biochem Microbiol &

    Lab Med Vilnius Lithuania;

    Vilnius Univ Fac Med Dept Physiol Biochem Microbiol &

    Lab Med Vilnius Lithuania;

    Vilnius Univ Dept Human &

    Med Genet Fac Med Santariskiu 2 LT-08661 Vilnius Lithuania;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 遗传学;
  • 关键词

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