Massively parallel sequencing of forensic STRs and SNPs using the Illumina® ForenSeq™ DNA Signature Prep Kit on the MiSeq FGx™ Forensic Genomics System.
暂无分享,去创建一个
[1] Walther Parson,et al. Evaluation of next generation mtGenome sequencing using the Ion Torrent Personal Genome Machine (PGM)☆ , 2013, Forensic science international. Genetics.
[2] Fei Guo,et al. Development of a 24-locus multiplex system to incorporate the core loci in the Combined DNA Index System (CODIS) and the European Standard Set (ESS). , 2014, Forensic science international. Genetics.
[3] Jo McEntyre,et al. The NCBI Handbook , 2002 .
[4] F. Liu,et al. Next generation sequencing of SNPs using the HID-Ion AmpliSeq™ Identity Panel on the Ion Torrent PGM™ platform. , 2016, Forensic science international. Genetics.
[5] H. S. Mogensen,et al. Evaluation of the Ion Torrent™ HID SNP 169-plex: A SNP typing assay developed for human identification by second generation sequencing. , 2014, Forensic science international. Genetics.
[6] James R. Knight,et al. Genome sequencing in microfabricated high-density picolitre reactors , 2005, Nature.
[7] Walther Parson,et al. Evaluation of the Illumina ForenSeq™ DNA Signature Prep Kit - MPS forensic application for the MiSeq FGx™ benchtop sequencer. , 2017, Forensic science international. Genetics.
[8] J. McPherson,et al. Coming of age: ten years of next-generation sequencing technologies , 2016, Nature Reviews Genetics.
[9] Lilliana I Moreno,et al. Performance and concordance of the ForenSeq™ system for autosomal and Y chromosome short tandem repeat sequencing of reference-type specimens. , 2017, Forensic science international. Genetics.
[10] R Higuchi,et al. Chelex 100 as a medium for simple extraction of DNA for PCR-based typing from forensic material. , 2013, BioTechniques.
[11] Bruce Budowle,et al. Evaluation of the Illumina(®) Beta Version ForenSeq™ DNA Signature Prep Kit for use in genetic profiling. , 2016, Forensic science international. Genetics.
[12] Hoi Yan Chow,et al. Systematic assessment of the performance of Illumina's MiSeq FGx™ forensic genomics system , 2017, Electrophoresis.
[13] Helga Thorvaldsdóttir,et al. Integrative Genomics Viewer , 2011, Nature Biotechnology.
[14] W R Mayr,et al. DNA Commission of the International Society for Forensic Genetics: revised and extended guidelines for mitochondrial DNA typing. , 2014, Forensic science international. Genetics.
[15] Jocelyne Bruand,et al. Developmental validation of the MiSeq FGx Forensic Genomics System for Targeted Next Generation Sequencing in Forensic DNA Casework and Database Laboratories. , 2017, Forensic science international. Genetics.
[16] Niels Morling,et al. Next generation sequencing and its applications in forensic genetics. , 2015, Forensic science international. Genetics.
[17] C. H. Becker,et al. Reliable genotyping of short tandem repeat loci without an allelic ladder using time-of-flight mass spectrometry , 1998, International Journal of Legal Medicine.
[18] Bruce Budowle,et al. High sensitivity multiplex short tandem repeat loci analyses with massively parallel sequencing. , 2015, Forensic science international. Genetics.
[19] John M. Butler,et al. Advanced Topics in Forensic DNA Typing: Methodology , 2011 .
[20] P. Gill,et al. Identification of the remains of the Romanov family by DNA analysis , 1994, Nature Genetics.
[21] Bruce Budowle,et al. High-quality and high-throughput massively parallel sequencing of the human mitochondrial genome using the Illumina MiSeq. , 2014, Forensic science international. Genetics.
[22] David H. Warshauer,et al. Single nucleotide polymorphism typing with massively parallel sequencing for human identification , 2013, International Journal of Legal Medicine.
[23] W Parson,et al. Inter-laboratory evaluation of SNP-based forensic identification by massively parallel sequencing using the Ion PGM™. , 2015, Forensic science international. Genetics.
[24] María José Farfán,et al. Improving DNA data exchange: validation studies on a single 6 dye STR kit with 24 loci. , 2014, Forensic science international. Genetics.
[25] Yu Cao,et al. Multiplex Y-STRs analysis using the ion torrent personal genome machine (PGM). , 2015, Forensic science international. Genetics.
[26] H. Pfeiffer,et al. Application of mtDNA SNP analysis in forensic casework. , 2011, Forensic science international. Genetics.
[27] Niels Morling,et al. Second-generation sequencing of forensic STRs using the Ion Torrent™ HID STR 10-plex and the Ion PGM™. , 2015, Forensic science international. Genetics.
[28] Ashley L. Silvia,et al. A preliminary assessment of the ForenSeq™ FGx System: next generation sequencing of an STR and SNP multiplex , 2016, International Journal of Legal Medicine.
[29] Kevin M. Kiesler,et al. Performance of a next generation sequencing SNP assay on degraded DNA. , 2015, Forensic science international. Genetics.
[30] Feng Liu,et al. Evaluation of the Early Access STR Kit v1 on the Ion Torrent PGM™ platform. , 2016, Forensic science international. Genetics.
[31] Bruce Budowle,et al. Massively parallel sequencing of forensic STRs: Considerations of the DNA commission of the International Society for Forensic Genetics (ISFG) on minimal nomenclature requirements. , 2016, Forensic science international. Genetics.
[32] Douglas R Storts,et al. Developmental validation of the PowerPlex(®) Fusion System for analysis of casework and reference samples: A 24-locus multiplex for new database standards. , 2014, Forensic science international. Genetics.
[33] Fei Guo,et al. Strategies for complete mitochondrial genome sequencing on Ion Torrent PGM™ platform in forensic sciences. , 2016, Forensic science international. Genetics.
[34] M. Allen,et al. Forensic analysis of autosomal STR markers using Pyrosequencing. , 2010, Forensic science international. Genetics.