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首页> 外文期刊>Nucleic Acids Research >Automating the identification of DNA variations using quality-based fluorescence re-sequencing: analysis of the human mitochondrial genome.
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Automating the identification of DNA variations using quality-based fluorescence re-sequencing: analysis of the human mitochondrial genome.

机译:使用基于质量的荧光重测序自动鉴定DNA变异:分析人类线粒体基因组。

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摘要

Diagnostic re-sequencing plays a central role in medical and evolutionary genetics. In this report we describe a process that applies fluorescence-based re-sequencing and an integrated set of analysis tools to automate and simplify the identification of DNA variations using the human mitochondrial genome as a model system. Two programs used in genome sequence analysis (Phred, a base-caller, and Phrap, a sequence assembler) are applied to assess the quality of each base call across the sequence. Potential DNA variants are automatically identified and 'tagged' by comparing the assembled sequence with a reference sequence. We also show that employing the Consed program to display a set of highly annotated reference sequences greatly simplifies data analysis by providing a visual database containing information on the location of the PCR primers, coding and regulatory sequences and previously known DNA variants. Among the 12 genomes sequenced 378 variants including 29 new variants were identified along with two heteroplasmic sites, automatically detected by the PolyPhred program. Overall we document the ease and speed of performing high quality and accurate fluorescence-based re-sequencing on long tracts of DNA as well as the application of new approaches to automatically find and view DNA variants among these sequences.
机译:诊断性重测序在医学和进化遗传学中起着核心作用。在本报告中,我们描述了一种应用基于荧光的重测序和一套完整的分析工具的过程,该过程使用人线粒体基因组作为模型系统来自动化和简化DNA变异的鉴定。应用了两个用于基因组序列分析的程序(Phred,一个碱基调用者,和Phrap,一个序列装配器)来评估整个序列中每个碱基调用的质量。通过将组装的序列与参考序列进行比较,可以自动识别并“标记”潜在的DNA变体。我们还显示,通过使用Consed程序显示一组高度注释的参考序列,可以通过提供一个可视数据库来大大简化数据分析,该数据库包含有关PCR引物,编码和调控序列以及先前已知的DNA变体的位置的信息。在12个基因组中,鉴定了378个变异体,其中包括29个新变异体,以及两个异质位点,由PolyPhred程序自动检测。总的来说,我们记录了在长链DNA上执行高质量和准确的基于荧光的重测序的简便性和速度,以及应用了新方法来自动发现和查看这些序列中的DNA变体。

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