Developmental validation of the ForenSeq® Kintelligence kit, MiSeq FGx® sequencing system and ForenSeq Universal Analysis Software

Forensic Investigative Genetic Genealogy, a recent sub discipline of forensic genomics, leverages the high throughput and sensitivity of detection of next generation sequencing and established genetic and genealogical approaches to support the identification of human remains from missing persons inv...

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Veröffentlicht in:Forensic science international : genetics 2024-07, Vol.71, p.103055-103055, Article 103055
Hauptverfasser: Antunes, Joana, Walichiewicz, Paulina, Forouzmand, Elmira, Barta, Richelle, Didier, Meghan, Han, Yonmee, Perez, Juan Carlos, Snedecor, June, Zlatkov, Clare, Padmabandu, Gothami, Devesse, Laurence, Radecke, Sarah, Holt, Cydne L., Kumar, Swathi A., Budowle, Bruce, Stephens, Kathryn M.
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Sprache:eng
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Zusammenfassung:Forensic Investigative Genetic Genealogy, a recent sub discipline of forensic genomics, leverages the high throughput and sensitivity of detection of next generation sequencing and established genetic and genealogical approaches to support the identification of human remains from missing persons investigations and investigative lead generation in violent crimes. To facilitate forensic DNA evidence analysis, the ForenSeq® Kintelligence multiplex, consisting of 10,230 SNPs, was developed. Design of the ForenSeq Kintelligence Kit, the MiSeq FGx® Sequencing System and the ForenSeq Universal Analysis Software is described. Developmental validation in accordance with SWGDAM guidelines and forensic quality assurance standards, using single source samples, is reported for the end-to-end workflow from library preparation to data interpretation. Performance metrics support the conclusion that more genetic information can be obtained from challenging samples compared to other commercially available forensic targeted DNA assays developed for capillary electrophoresis (CE) or other current next generation sequencing (NGS) kits due to the higher number of markers, the overall shorter amplicon sizes (97.8%
ISSN:1872-4973
1878-0326
DOI:10.1016/j.fsigen.2024.103055