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首页> 外文期刊>Journal of cardiovascular translational research >Non optical semi-conductor next generation sequencing of the main cardiac QT-interval duration genes in pooled DNA samples
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Non optical semi-conductor next generation sequencing of the main cardiac QT-interval duration genes in pooled DNA samples

机译:混合 DNA 样本中主要心脏 QT 间期持续时间基因的非光学半导体下一代测序

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DNA variants at the genes encoding cardiac channels have been associated with inherited arrhythmias and the QT interval in the general population. Next generation sequencing technologies would be of special interest to uncover the genetic variation at these genes. The amplification and sequencing of DNA pools (instead of single individuals) would facilitate the rapid and cost-effective screening of large amounts of individuals. However, this pooling strategy could result in a signal of the rare variants below the detection capacity. To validate this approach, a pool of 20 individuals with known rare unique variants in five genes was amplified in only two tubes and sequenced using the non optical semi-conductor (Ion Torrent PGM, Life Technologies) technology. We show that this could be an effective strategy for the screening of large cohorts. Among others, this would facilitate the discovery of new sequence variants linked to cardiac arrhythmia in the general population.
机译:编码心脏通道的基因的 DNA 变异与一般人群的遗传性心律失常和 QT 间期有关。下一代测序技术对于揭示这些基因的遗传变异将特别感兴趣。DNA库(而不是单个个体)的扩增和测序将有助于快速和具有成本效益地筛选大量个体。然而,这种合并策略可能会导致罕见变异的信号低于检测能力。为了验证这种方法,仅在两个试管中扩增了 20 个已知具有五个基因中罕见独特变异的个体,并使用非光学半导体(Ion Torrent PGM,Life Technologies)技术进行测序。我们表明,这可能是筛选大型队列的有效策略。除其他外,这将有助于在普通人群中发现与心律失常相关的新序列变异。

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