scholarly journals Forensic DNA phenotyping: Canis familiaris breed classification and skeletal phenotype prediction using functionally significant skeletal SNPs and indels

2021 ◽  
Author(s):  
Patrick W. Raymond ◽  
Brandon D. Velie ◽  
Claire M. Wade
2020 ◽  
pp. 1357034X2091916
Author(s):  
Rafaela Granja ◽  
Helena Machado ◽  
Filipa Queirós

Forensic DNA phenotyping is a genetic technology that might be used in criminal investigations. Based on DNA samples of the human body found at crime scenes, it allows to infer externally visible characteristics (such as eye, hair and skin colour) and continental-based biogeographical ancestry. By indicating the probable visible appearance of a criminal suspect, forensic DNA phenotyping allows to narrow down the focus of a criminal investigation. In this article, drawing on interviews with forensic geneticists, we explore how their narratives translate contemporary focus on criminal molecularized bodies. We propose the concept of (de)materialization to approach three aspects of the forensic geneticists’ views. The first regards considering bodies as mutable entities. The second relates to socially contingent meanings attributed to bodies. The third regards to controversies surrounding data reliability. By reflecting upon the (de)materialization of criminal bodies, forensic geneticists juxtapose the defence and unsettling of forensic DNA phenotyping claims.


2019 ◽  
Vol 24 (1) ◽  
pp. 119-154
Author(s):  
Veronika Lipphardt ◽  
Nicholas Buchanan ◽  
Peter Pfaffelhuber ◽  
Fabian Staubach ◽  
Matthias Wienroth

Zusammenfassung Durch eine Gesetzesänderung im Dezember 2019 ist im Rahmen von Strafermittlungsverfahren nunmehr der Einsatz des „Forensic DNA Phenotyping“, d. h. von Technologien zur Vorhersage von Haut-, Haar- und Augenfarbe sowie biologischem Alter, erlaubt. Dieser Beitrag diskutiert die Verlässlichkeit, Nützlichkeit und Legitimität von solchen Erweiterten DNATechnologien und damit die Rahmenbedingungen ihres Einsatzes in Deutschland. Dabei wird aufgezeigt wie kompliziert, fehleranfällig, voraussetzungsreich, anspruchsvoll und heikel der Einsatz dieser Technologien in Ermittlungen sein kann, wenn nicht entsprechende Vorkehrungen getroffen werden, und wenn sie nicht auf umsichtig begleitete Einzelfälle beschränkt bleiben. Aufbauend auf dieser Analyse werden schließlich Maßnahmen für die Anwendung und Regulierung Erweiterter DNA-Technologien in Deutschland vorgeschlagen.


Genes ◽  
2021 ◽  
Vol 12 (9) ◽  
pp. 1362
Author(s):  
Marta Diepenbroek ◽  
Birgit Bayer ◽  
Katja Anslinger

Single-cell sequencing is a fast developing and very promising field; however, it is not commonly used in forensics. The main motivation behind introducing this technology into forensics is to improve mixture deconvolution, especially when a trace consists of the same cell type. Successful studies demonstrate the ability to analyze a mixture by separating single cells and obtaining CE-based STR profiles. This indicates a potential use of the method in other forensic investigations, like forensic DNA phenotyping, in which using mixed traces is not fully recommended. For this study, we collected single-source autopsy blood from which the white cells were first stained and later separated with the DEPArray™ N×T System. Groups of 20, 10, and 5 cells, as well as 20 single cells, were collected and submitted for DNA extraction. Libraries were prepared using the Ion AmpliSeq™ PhenoTrivium Panel, which includes both phenotype (HIrisPlex-S: eye, hair, and skin color) and ancestry-associated SNP-markers. Prior to sequencing, half of the single-cell-based libraries were additionally amplified and purified in order to improve the library concentrations. Ancestry and phenotype analysis resulted in nearly full consensus profiles resulting in correct predictions not only for the cells groups but also for the ten re-amplified single-cell libraries. Our results suggest that sequencing of single cells can be a promising tool used to deconvolute mixed traces submitted for forensic DNA phenotyping.


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