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Sequencing technologies and tools for short tandem repeat variation detection

机译:用于短串联重复序列变异检测的测序技术和工具

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摘要

Short tandem repeats are highly polymorphic and associated with a wide range of phenotypic variation, some of which cause neurodegenerative disease in humans. With advances in high-throughput sequencing technologies, there are novel opportunities to study genetic variation. While available sequencing technologies and bioinformatics tools provide options for mining high-throughput sequencing data, their suitability for analysis of repeat variation is an open question, with tools for quantifying variability in repetitive sequence still in their infancy. We present here a comprehensive survey and empirical evaluation of current sequencing technologies and bioinformatics tools in all stages of an analysis pipeline. While there is not one optimal pipeline to suit all circumstances, we find that the choice of alignment and repeat genotyping tools greatly impacts the accuracy and efficiency by which short tandem repeat variation can be detected. We further note that to detect variation relevant to many repeat diseases, it is essential to choose technologies that offer either long read-lengths or paired-end sequencing, coupled with specific genotyping tools.
机译:短串联重复序列是高度多态的,并与广泛的表型变异有关,其中一些会引起人类神经退行性疾病。随着高通量测序技术的进步,研究遗传变异的新机会也越来越多。虽然可用的测序技术和生物信息学工具为挖掘高通量测序数据提供了选择,但它们对重复变异分析的适用性仍是一个悬而未决的问题,用于定量重复序列变异性的工具仍处于起步阶段。我们在这里介绍了分析流程各个阶段中当前测序技术和生物信息学工具的全面调查和实证评估。虽然没有一种适合所有情况的最佳流水线,但我们发现选择比对和重复基因分型工具极大地影响了检测短串联重复序列变异的准确性和效率。我们进一步注意到,要检测与许多重复疾病相关的变异,必须选择提供长读长或配对末端测序以及特定基因分型工具的技术。

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