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Published in: International Journal of Legal Medicine 6/2013

01-11-2013 | Original Article

Single nucleotide polymorphism typing with massively parallel sequencing for human identification

Authors: Seung Bum Seo, Jonathan L. King, David H. Warshauer, Carey P. Davis, Jianye Ge, Bruce Budowle

Published in: International Journal of Legal Medicine | Issue 6/2013

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Abstract

The Ion AmpliSeq™ HID single nucleotide polymorphism (SNP) panel, a primer pool of 103 autosomal SNPs and 33 Y-SNPs, was evaluated using the Ion 314™ Chip on the Ion PGM™ Sequencer with four DNA samples. The study focused on the sequencing of DNA at three different initial target quantities, related interpretation issues, and concordance of results with another sequencing platform, i.e., Genome Analyzer IIx. With 10 ng of template DNA, all genotypes at the 136 SNPs were detected. With 1 ng of DNA, all SNPs were detected and one SNP locus in one sample showed extreme heterozygote imbalance on allele coverage. With 100 pg of DNA, an average of 1.6 SNP loci were not detected, and an average of 4.3 SNPs showed heterozygote imbalance. The average sequence coverage was 945–600× at autosomal SNPs and 465–209× at Y-SNPs for 10 ng–100 pg of DNA. The average heterozygote allele coverage ratio was 89.6–61.8 % for 10 ng–100 pg of DNA. At 10 ng of DNA, all genotypes of the 95 SNPs shared between the two different sequencing platforms were concordant except for one SNP, rs1029047. The error was due to the misalignment of a flanking homopolymer. Overall, the data support that genotyping a large battery of SNPs is feasible with massively parallel sequencing. With barcode systems, better allele balance, and specifically designed alignment software, a more comprehensive rapid genotyping and more cost-effective results may be obtained from multiple samples in one analysis than are possible with current typing and capillary electrophoresis systems.
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Literature
1.
go back to reference Sanchez JJ, Phillips C, Børsting C, Balogh K, Bogus M, Fondevila M, Harrison CD, Musgrave-Brown E, Salas A, Syndercombe-Court D, Schneider PM, Carracedo A, Morling N (2009) A multiplex assay with 52 single nucleotide polymorphisms for human identification. Electrophoresis 27:1713–1724 Sanchez JJ, Phillips C, Børsting C, Balogh K, Bogus M, Fondevila M, Harrison CD, Musgrave-Brown E, Salas A, Syndercombe-Court D, Schneider PM, Carracedo A, Morling N (2009) A multiplex assay with 52 single nucleotide polymorphisms for human identification. Electrophoresis 27:1713–1724
2.
go back to reference Pakstis AJ, Speed WC, Fang R, Hyland FC, Furtado MR, Kidd JR, Kidd KK (2010) SNPs for a universal individual identification panel. Hum Genet 127:315–324PubMed Pakstis AJ, Speed WC, Fang R, Hyland FC, Furtado MR, Kidd JR, Kidd KK (2010) SNPs for a universal individual identification panel. Hum Genet 127:315–324PubMed
3.
go back to reference Ge J, Eisenberg A, Budowle B (2012) Developing criteria and data to determine best options for expanding the core CODIS loci. Investig Genet 3:1PubMed Ge J, Eisenberg A, Budowle B (2012) Developing criteria and data to determine best options for expanding the core CODIS loci. Investig Genet 3:1PubMed
4.
go back to reference Tomas C, Axler-DiPerte G, Budimlija ZM, Børsting C, Coble MD, Decker AE, Eisenberg A, Fang R, Fondevila M, Fredslund SF, Gonzalez S, Hansen AJ, Hoff-Olsen P, Haas C, Kohler P, Kriegel AK, Lindblom B, Manohar F, Maroñas O, Mogensen HS, Neureuther K, Nilsson H, Scheible MK, Schneider PM, Sonntag ML, Stangegaard M, Syndercombe-Court D, Thacker CR, Vallone PM, Westen AA, Morling N (2011) Autosomal SNP typing of forensic samples with the GenPlex™ HID System: results of a collaborative study. Forensic Sci Int Genet 5:369–375PubMed Tomas C, Axler-DiPerte G, Budimlija ZM, Børsting C, Coble MD, Decker AE, Eisenberg A, Fang R, Fondevila M, Fredslund SF, Gonzalez S, Hansen AJ, Hoff-Olsen P, Haas C, Kohler P, Kriegel AK, Lindblom B, Manohar F, Maroñas O, Mogensen HS, Neureuther K, Nilsson H, Scheible MK, Schneider PM, Sonntag ML, Stangegaard M, Syndercombe-Court D, Thacker CR, Vallone PM, Westen AA, Morling N (2011) Autosomal SNP typing of forensic samples with the GenPlex™ HID System: results of a collaborative study. Forensic Sci Int Genet 5:369–375PubMed
5.
go back to reference Børsting C, Sanchez JJ, Morling N (2005) SNP typing on the NanoChip electronic microarray. Methods Mol Biol 297:155–168PubMed Børsting C, Sanchez JJ, Morling N (2005) SNP typing on the NanoChip electronic microarray. Methods Mol Biol 297:155–168PubMed
6.
go back to reference Mengel-Jørgensen J, Sanchez JJ, Børsting C, Kirpekar F, Morling N (2005) Typing of multiple single-nucleotide polymorphisms using ribonuclease cleavage of DNA/RNA chimeric single-base extension primers and detection by MALDI-TOF mass spectrometry. Anal Chem 77:5229–5235PubMed Mengel-Jørgensen J, Sanchez JJ, Børsting C, Kirpekar F, Morling N (2005) Typing of multiple single-nucleotide polymorphisms using ribonuclease cleavage of DNA/RNA chimeric single-base extension primers and detection by MALDI-TOF mass spectrometry. Anal Chem 77:5229–5235PubMed
7.
go back to reference Budowle B, Planz J, Campbell R, Eisenberg A (2004) SNPs and microarray technology in forensic genetics: development and application to mitochondrial DNA. Forens Sci Rev 16:22–36 Budowle B, Planz J, Campbell R, Eisenberg A (2004) SNPs and microarray technology in forensic genetics: development and application to mitochondrial DNA. Forens Sci Rev 16:22–36
8.
go back to reference Budowle B (2004) SNP typing strategies. Forensic Sci Int 146(Suppl):S139–S142PubMed Budowle B (2004) SNP typing strategies. Forensic Sci Int 146(Suppl):S139–S142PubMed
9.
go back to reference Sobrino B, Brión M, Carracedo A (2005) SNPs in forensic genetics: a review on SNP typing methodologies. Forensic Sci Int 154:181–194PubMed Sobrino B, Brión M, Carracedo A (2005) SNPs in forensic genetics: a review on SNP typing methodologies. Forensic Sci Int 154:181–194PubMed
11.
go back to reference Wei YL, Li CX, Jia J, Hu L, Liu Y (2012) Forensic identification using a multiplex assay of 47 SNPs. J Forensic Sci 57:1448–1156PubMed Wei YL, Li CX, Jia J, Hu L, Liu Y (2012) Forensic identification using a multiplex assay of 47 SNPs. J Forensic Sci 57:1448–1156PubMed
12.
go back to reference Life Technologies (2012) Ion AmpliSeq™ Library Preparation User Guide. Life Technologies, Foster City (CA) Life Technologies (2012) Ion AmpliSeq™ Library Preparation User Guide. Life Technologies, Foster City (CA)
13.
go back to reference Life Technologies (2011) Ion Library Quantitation Kit User Guide. Life Technologies, Foster City (CA) Life Technologies (2011) Ion Library Quantitation Kit User Guide. Life Technologies, Foster City (CA)
14.
go back to reference Life Technologies (2011) Ion OneTouch™ 200 Template Kit v2 DL. Life Technologies, Foster City (CA) Life Technologies (2011) Ion OneTouch™ 200 Template Kit v2 DL. Life Technologies, Foster City (CA)
15.
go back to reference Life Technologies (2011) Ion PGM™ 200 Sequencing Kit. Life Technologies, Foster City (CA) Life Technologies (2011) Ion PGM™ 200 Sequencing Kit. Life Technologies, Foster City (CA)
16.
go back to reference Thorvaldsdóttir H, Robinson JT, Mesirov JP (2012) Integrative Genomics Viewer (IGV): high-performance genomics data visualization and exploration. Brief Bioinform. doi:10.1093/bib/bbs017 PubMed Thorvaldsdóttir H, Robinson JT, Mesirov JP (2012) Integrative Genomics Viewer (IGV): high-performance genomics data visualization and exploration. Brief Bioinform. doi:10.​1093/​bib/​bbs017 PubMed
17.
go back to reference Robinson JT, Thorvaldsdóttir H, Winckler W, Guttman M, Lander ES, Getz G, Mesirov JP (2011) Integrative genomics viewer. Nat Biotechnol 29:24–26PubMed Robinson JT, Thorvaldsdóttir H, Winckler W, Guttman M, Lander ES, Getz G, Mesirov JP (2011) Integrative genomics viewer. Nat Biotechnol 29:24–26PubMed
18.
go back to reference Davis C, Warshauer, D, Budowle B (2012) DNA profiling of database reference samples using second generation sequencing. 23rd International symposium on human identification, Nashville (TN) Davis C, Warshauer, D, Budowle B (2012) DNA profiling of database reference samples using second generation sequencing. 23rd International symposium on human identification, Nashville (TN)
19.
go back to reference Rothberg JM, Hinz W, Rearick TM, Schultz J, Mileski W, Davey M, Leamon JH, Johnson K, Milgrew MJ, Edwards M, Hoon J, Simons JF, Marran D, Myers JW, Davidson JF, Branting A, Nobile JR, Puc BP, Light D, Clark TA, Huber M, Branciforte JT, Stoner IB, Cawley SE, Lyons M, Fu Y, Homer N, Sedova M, Miao X, Reed B, Sabina J, Feierstein E, Schorn M, Alanjary M, Dimalanta E, Dressman D, Kasinskas R, Sokolsky T, Fidanza JA, Namsaraev E, McKernan KJ, Williams A, Roth GT, Bustillo J (2011) An integrated semiconductor device enabling non-optical genome sequencing. Nature 475:348–352PubMed Rothberg JM, Hinz W, Rearick TM, Schultz J, Mileski W, Davey M, Leamon JH, Johnson K, Milgrew MJ, Edwards M, Hoon J, Simons JF, Marran D, Myers JW, Davidson JF, Branting A, Nobile JR, Puc BP, Light D, Clark TA, Huber M, Branciforte JT, Stoner IB, Cawley SE, Lyons M, Fu Y, Homer N, Sedova M, Miao X, Reed B, Sabina J, Feierstein E, Schorn M, Alanjary M, Dimalanta E, Dressman D, Kasinskas R, Sokolsky T, Fidanza JA, Namsaraev E, McKernan KJ, Williams A, Roth GT, Bustillo J (2011) An integrated semiconductor device enabling non-optical genome sequencing. Nature 475:348–352PubMed
20.
go back to reference Voelkerding KV, Dames SA, Durtschi JD (2009) Next-generation sequencing: from basic research to diagnostics. Clin Chem 55:641–658PubMed Voelkerding KV, Dames SA, Durtschi JD (2009) Next-generation sequencing: from basic research to diagnostics. Clin Chem 55:641–658PubMed
21.
go back to reference Keating B, Bansal AT, Walsh S, Millman J, Newman J, Kidd K, Budowle B, Eisenberg A, Donfack J, Gasparini P, Budimlija Z, Henders AK, Chandrupatla H, Duffy DL, Gordon SD, Hysi P, Liu F, Medland SE, Rubin L, Martin NG, Spector TD, Kayser M (2013) First all-in-one inference tool for DNA forensics: parallel genome-wide inference of bio-geographic ancestry, appearance, relatedness and gender with Identitas forensic chip. Int J Leg Med 127:559–572 Keating B, Bansal AT, Walsh S, Millman J, Newman J, Kidd K, Budowle B, Eisenberg A, Donfack J, Gasparini P, Budimlija Z, Henders AK, Chandrupatla H, Duffy DL, Gordon SD, Hysi P, Liu F, Medland SE, Rubin L, Martin NG, Spector TD, Kayser M (2013) First all-in-one inference tool for DNA forensics: parallel genome-wide inference of bio-geographic ancestry, appearance, relatedness and gender with Identitas forensic chip. Int J Leg Med 127:559–572
Metadata
Title
Single nucleotide polymorphism typing with massively parallel sequencing for human identification
Authors
Seung Bum Seo
Jonathan L. King
David H. Warshauer
Carey P. Davis
Jianye Ge
Bruce Budowle
Publication date
01-11-2013
Publisher
Springer Berlin Heidelberg
Published in
International Journal of Legal Medicine / Issue 6/2013
Print ISSN: 0937-9827
Electronic ISSN: 1437-1596
DOI
https://doi.org/10.1007/s00414-013-0879-7

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