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Comprehensive next-generation sequence analyses of the entire mitochondrial genome reveal new insights into the molecular diagnosis of mitochondrial DNA disorders

机译:对整个线粒体基因组进行全面的下一代序列分析,揭示了对线粒体DNA疾病分子诊断的新见解

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Purpose:The application of massively parallel sequencing technology to the analysis of the mitochondrial genome has demonstrated great improvement in the molecular diagnosis of mitochondrial DNA-related disorders. The objective of this study was to investigate the performance characteristics and to gain new insights into the analysis of the mitochondrial genome.Methods:The entire mitochondrial genome was analyzed as a single amplicon using a long-range PCR-based enrichment approach coupled with massively parallel sequencing. The interference of the nuclear mitochondrial DNA homologs was distinguished from the actual mitochondrial DNA sequences by comparison with the results obtained from conventional PCR-based Sanger sequencing using multiple pairs of primers.Results:Our results demonstrated the uniform coverage of the entire mitochondrial genome. Massively parallel sequencing of the single amplicon revealed the presence of single-nucleotide polymorphisms and nuclear homologs of mtDNA sequences that cause the erroneous and inaccurate variant calls when PCR/Sanger sequencing approach was used. This single amplicon massively parallel sequencing strategy provides an accurate quantification of mutation heteroplasmy as well as the detection and mapping of mitochondrial DNA deletions.Conclusion:The ability to quantitatively and qualitatively evaluate every single base of the entire mitochondrial genome is indispensible to the accurate molecular diagnosis and genetic counseling of mitochondrial DNA-related disorders. This new approach may be considered as first-line testing for comprehensive analysis of the mitochondrial genome.
机译:目的:大规模并行测序技术在线粒体基因组分析中的应用已显示出与线粒体DNA相关疾病的分子诊断方面的巨大进步。这项研究的目的是研究性能特征并获得对线粒体基因组分析的新见识。方法:采用基于长链PCR的富集方法和大规模平行分析方法,将整个线粒体基因组作为单个扩增子进行分析。排序。通过与使用多对引物的常规基于PCR的Sanger测序结果进行比较,可以将核线粒体DNA同源物的干扰与实际的线粒体DNA序列区分开。结果:我们的结果证明了整个线粒体基因组的均匀覆盖范围。单个扩增子的大规模平行测序表明,使用PCR / Sanger测序方法时,存在单核苷酸多态性和mtDNA序列的核同系物,导致错误和不准确的变异调用。这种单一的扩增子大规模平行测序策略可提供突变异质性的精确定量以及线粒体DNA缺失的检测和作图。结论:定量和定性评估整个线粒体基因组每个碱基的能力对于准确的分子诊断是必不可少的和线粒体DNA相关疾病的遗传咨询。可以将这种新方法视为对线粒体基因组进行全面分析的一线测试。

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