DNA取证数据的并行计算

Adam Michaleas, Philip Fremont-Smith, Chelsea Lennartz, D. Ricke
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引用次数: 0

摘要

单核苷酸多态性(snp)的高通量测序(HTS)提供了先进的DNA取证能力,包括复杂的混合物分析。本文描述了一个可扩展的管道,用于大型DNA取证数据,既可以在独立系统上使用,也可以在高性能计算系统上使用。该管道允许并行处理多个样本。监测模块检测Illumina和Ion Torrent平台上完成的测序数据集。GrigoraSNPs用于从FASTQ文件中自动调用SNP等位基因。这些结果将自动加载到IdPrism DNA混合分析系统中。HTS SNP数据分析通常在大约7分钟内完成100M序列,包括SNP等位基因调用,可以在IdPrism系统中快速访问结果,用于多路样品的鉴定和复杂混合分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Parallel Computing with DNA Forensics Data
High-throughput sequencing (HTS) of single nu-cleotide polymorphisms (SNPs) provides advanced DNA forensics capabilities including complex mixture analysis. This paper describes a scalable pipeline for large DNA forensics data which can either be utilized on a standalone system or can also be used on high performance computing systems. This pipeline enables parallelization of processing of multiple samples. Surveillance modules detect completed sequencing datasets on both Illumina and Ion Torrent platforms. GrigoraSNPs is used for automated SNP allele calling from FASTQ files. These results are automatically loaded into the IdPrism DNA mixture analysis system. HTS SNP data analysis typically completes in roughly 7 minutes for 100M sequences, including SNP allele calling, enabling rapid access to the results within the IdPrism system for identification and complex mixture analysis of multiplexed samples.
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