Interpreting Mixture Profiles: Comparison between Precision ID GlobalFiler™ NGS STR Panel v2 and Traditional Methods

Forensic investigation for the identification of offenders, recognition of human remains, and verification of family relationships requires the analysis of particular types of highly informative DNA markers, which have high discriminatory power and are efficient for typing degraded samples. These ma...

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Main Authors: Michele Ragazzo, Stefania Carboni, Valerio Caputo, Carlotta Buttini, Laura Manzo, Valeria Errichiello, Giulio Puleri, Emiliano Giardina
Format: Article
Language:English
Published: MDPI AG 2020-05-01
Series:Genes
Subjects:
Online Access:https://www.mdpi.com/2073-4425/11/6/591
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spelling doaj-24f4b72cb30c489eb2d17bb35180c0302020-11-25T03:25:56ZengMDPI AGGenes2073-44252020-05-011159159110.3390/genes11060591Interpreting Mixture Profiles: Comparison between Precision ID GlobalFiler™ NGS STR Panel v2 and Traditional MethodsMichele Ragazzo0Stefania Carboni1Valerio Caputo2Carlotta Buttini3Laura Manzo4Valeria Errichiello5Giulio Puleri6Emiliano Giardina7Department of Biomedicine and Prevention, Tor Vergata University of Rome, 00133 Rome, ItalyGenomic Medicine Laboratory UILDM, Santa Lucia Foundation IRCCS, 00142 Rome, ItalyDepartment of Biomedicine and Prevention, Tor Vergata University of Rome, 00133 Rome, ItalyDepartment of Biomedicine and Prevention, Tor Vergata University of Rome, 00133 Rome, ItalyDepartment of Biomedicine and Prevention, Tor Vergata University of Rome, 00133 Rome, ItalyDepartment of Biomedicine and Prevention, Tor Vergata University of Rome, 00133 Rome, ItalyDepartment of Biomedicine and Prevention, Tor Vergata University of Rome, 00133 Rome, ItalyDepartment of Biomedicine and Prevention, Tor Vergata University of Rome, 00133 Rome, ItalyForensic investigation for the identification of offenders, recognition of human remains, and verification of family relationships requires the analysis of particular types of highly informative DNA markers, which have high discriminatory power and are efficient for typing degraded samples. These markers, called STRs (Short Tandem Repeats), can be amplified by multiplex-PCR (Polymerase Chain Reaction) allowing attainment of a unique profile through which it is possible to distinguish one individual from another with a high statistical significance. The rapid and progressive evolution of analytical techniques and the advent of Next-Generation Sequencing (NGS) have completely revolutionized the DNA sequencing approach. This technology, widely used today in the diagnostic field, has the advantage of being able to process several samples in parallel, producing a huge volume of data in a short time. At this time, although default parameters of interpretation software are available, there is no general agreement on the interpretation rules of forensic data produced via NGS technology. Here we report a pilot study aimed for a comparison between NGS (Precision ID GlobalFiler™ NGS STR Panel v2, <i>Thermo Fisher</i> Scientific, Waltham, MA, USA) and traditional methods in their ability to identify major and minor contributors in DNA mixtures from saliva and urine samples. A quantity of six mixed samples were prepared for both saliva and urine samples from donors. A total of 12 mixtures were obtained in the ratios of 1:2; 1:4; 1:6; 1:8; 1:10; and 1:20 between minor and major contributors. Although the number of analyzed mixtures is limited, our results confirm that NGS technology offers a huge range of additional information on samples, but cannot ensure a higher sensitivity in respect to traditional methods. Finally, the Precision ID GlobalFiler™ NGS STR Panel v2 is a powerful method for kinship analyses and typing reference samples, but its use in biological evidence should be carefully considered on the basis of the characteristics of the evidence.https://www.mdpi.com/2073-4425/11/6/591forensic genomicsDNA typingnext-generation sequencing (NGS)mixtures
collection DOAJ
language English
format Article
sources DOAJ
author Michele Ragazzo
Stefania Carboni
Valerio Caputo
Carlotta Buttini
Laura Manzo
Valeria Errichiello
Giulio Puleri
Emiliano Giardina
spellingShingle Michele Ragazzo
Stefania Carboni
Valerio Caputo
Carlotta Buttini
Laura Manzo
Valeria Errichiello
Giulio Puleri
Emiliano Giardina
Interpreting Mixture Profiles: Comparison between Precision ID GlobalFiler™ NGS STR Panel v2 and Traditional Methods
Genes
forensic genomics
DNA typing
next-generation sequencing (NGS)
mixtures
author_facet Michele Ragazzo
Stefania Carboni
Valerio Caputo
Carlotta Buttini
Laura Manzo
Valeria Errichiello
Giulio Puleri
Emiliano Giardina
author_sort Michele Ragazzo
title Interpreting Mixture Profiles: Comparison between Precision ID GlobalFiler™ NGS STR Panel v2 and Traditional Methods
title_short Interpreting Mixture Profiles: Comparison between Precision ID GlobalFiler™ NGS STR Panel v2 and Traditional Methods
title_full Interpreting Mixture Profiles: Comparison between Precision ID GlobalFiler™ NGS STR Panel v2 and Traditional Methods
title_fullStr Interpreting Mixture Profiles: Comparison between Precision ID GlobalFiler™ NGS STR Panel v2 and Traditional Methods
title_full_unstemmed Interpreting Mixture Profiles: Comparison between Precision ID GlobalFiler™ NGS STR Panel v2 and Traditional Methods
title_sort interpreting mixture profiles: comparison between precision id globalfiler™ ngs str panel v2 and traditional methods
publisher MDPI AG
series Genes
issn 2073-4425
publishDate 2020-05-01
description Forensic investigation for the identification of offenders, recognition of human remains, and verification of family relationships requires the analysis of particular types of highly informative DNA markers, which have high discriminatory power and are efficient for typing degraded samples. These markers, called STRs (Short Tandem Repeats), can be amplified by multiplex-PCR (Polymerase Chain Reaction) allowing attainment of a unique profile through which it is possible to distinguish one individual from another with a high statistical significance. The rapid and progressive evolution of analytical techniques and the advent of Next-Generation Sequencing (NGS) have completely revolutionized the DNA sequencing approach. This technology, widely used today in the diagnostic field, has the advantage of being able to process several samples in parallel, producing a huge volume of data in a short time. At this time, although default parameters of interpretation software are available, there is no general agreement on the interpretation rules of forensic data produced via NGS technology. Here we report a pilot study aimed for a comparison between NGS (Precision ID GlobalFiler™ NGS STR Panel v2, <i>Thermo Fisher</i> Scientific, Waltham, MA, USA) and traditional methods in their ability to identify major and minor contributors in DNA mixtures from saliva and urine samples. A quantity of six mixed samples were prepared for both saliva and urine samples from donors. A total of 12 mixtures were obtained in the ratios of 1:2; 1:4; 1:6; 1:8; 1:10; and 1:20 between minor and major contributors. Although the number of analyzed mixtures is limited, our results confirm that NGS technology offers a huge range of additional information on samples, but cannot ensure a higher sensitivity in respect to traditional methods. Finally, the Precision ID GlobalFiler™ NGS STR Panel v2 is a powerful method for kinship analyses and typing reference samples, but its use in biological evidence should be carefully considered on the basis of the characteristics of the evidence.
topic forensic genomics
DNA typing
next-generation sequencing (NGS)
mixtures
url https://www.mdpi.com/2073-4425/11/6/591
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