...
首页> 外文期刊>BMC Genomics >Underlying Data for Sequencing the Mitochondrial Genome with the Massively Parallel Sequencing Platform Ion Torrent ? PGM ?
【24h】

Underlying Data for Sequencing the Mitochondrial Genome with the Massively Parallel Sequencing Platform Ion Torrent ? PGM ?

机译:大规模平行测序平台Ion Torrent对线粒体基因组测序的基础数据? PGM?

获取原文
   

获取外文期刊封面封底 >>

       

摘要

Massively parallel sequencing (MPS) technologies have the capacity to sequence targeted regions or whole genomes of multiple nucleic acid samples with high coverage by sequencing millions of DNA fragments simultaneously. Compared with Sanger sequencing, MPS also can reduce labor and cost on a per nucleotide basis and indeed on a per sample basis. In this study, whole genomes of human mitochondria (mtGenome) were sequenced on the Personal Genome Machine (PGMTM) (Life Technologies, San Francisco, CA), the out data were assessed, and the results were compared with data previously generated on the MiSeqTM (Illumina, San Diego, CA). The objectives of this paper were to determine the feasibility, accuracy, and reliability of sequence data obtained from the PGM. 24 samples were multiplexed (in groups of six) and sequenced on the at least 10 megabase throughput 314 chip. The depth of coverage pattern was similar among all 24 samples; however the coverage across the genome varied. For strand bias, the average ratio of coverage between the forward and reverse strands at each nucleotide position indicated that two-thirds of the positions of the genome had ratios that were greater than 0.5. A few sites had more extreme strand bias. Another observation was that 156 positions had a false deletion rate greater than 0.15 in one or more individuals. There were 31-98 (SNP) mtGenome variants observed per sample for the 24 samples analyzed. The total 1237 (SNP) variants were concordant between the results from the PGM and MiSeq. The quality scores for haplogroup assignment for all 24 samples ranged between 88.8%-100%. In this study, mtDNA sequence data generated from the PGM were analyzed and the output evaluated. Depth of coverage variation and strand bias were identified but generally were infrequent and did not impact reliability of variant calls. Multiplexing of samples was demonstrated which can improve throughput and reduce cost per sample analyzed. Overall, the results of this study, based on orthogonal concordance testing and phylogenetic scrutiny, supported that whole mtGenome sequence data with high accuracy can be obtained using the PGM platform.
机译:大规模并行测序(MPS)技术具有通过同时对数百万个DNA片段进行测序来对多个核酸样品的目标区域或整个基因组进行测序的能力。与Sanger测序相比,MPS还可以减少每个核苷酸,甚至每个样品的人工和成本。在这项研究中,人类线粒体(mtGenome)的全基因组在个人基因组机(PGMTM)(Life Technologies,San Francisco,CA)上进行了测序,评估了out数据,并将结果与​​先前在MiSeqTM上生成的数据进行了比较(Illumina,圣地亚哥,加利福尼亚)。本文的目的是确定从PGM获得的序列数据的可行性,准确性和可靠性。对24个样本进行多路复用(六个一组),并在至少10兆碱基吞吐量的314芯片上进行测序。在所有24个样本中,覆盖模式的深度相似。但是整个基因组的覆盖范围各不相同。对于链偏向,在每个核苷酸位置正向链和反向链之间的平均覆盖率表明,基因组位置的三分之二具有大于0.5的比率。一些站点具有更大的极端链偏向。另一观察结果是,在一个或多个个体中,有156个位置的假缺失率大于0.15。在分析的24个样品中,每个样品观察到31-98(SNP)mtGenome变体。 PGM和MiSeq的结果之间共有1237(SNP)变异。所有24个样本的单倍群分配的质量得分在88.8%-100%之间。在这项研究中,分析了从PGM生成的mtDNA序列数据并评估了输出。可以确定覆盖深度的变化和链偏向的深度,但是通常很少见,并且不影响变体检出的可靠性。已证明样品的多路复用可以提高通量并降低每个分析样品的成本。总体而言,基于正交一致性测试和系统发育检查的这项研究结果支持可以使用PGM平台获得高精度的完整mtGenome序列数据。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号