The HIrisPlex system for simultaneous prediction of hair and eye colour from DNA

Система HIrisPlex для одновременного прогнозирования цвета волос и глаз по ДНК
Manfred Kayser, Fan Liu, Andreas Wollstein, Wojciech Branicki, Susan Walsh, Leda Kovatsi, Arwin Ralf, A Kosiniak-Kamysz
2012-08-20

DNA variantsHIrisPlex systemforensic DNA phenotypinghair and eye colour predictionmultiplex assay
Recently, the field of predicting phenotypes of externally visible characteristics (EVCs) from DNA genotypes with the final aim of concentrating police investigations to find persons completely unknown to investigating authorities, also referred to as Forensic DNA Phenotyping (FDP), has started to become established in forensic biology. We previously developed and forensically validated the IrisPlex system for accurate prediction of blue and brown eye colour from DNA, and recently showed that all major hair colour categories are predictable from carefully selected DNA markers. Here, we introduce the newly developed HIrisPlex system, which is capable of simultaneously predicting both hair and eye colour from DNA. HIrisPlex consists of a single multiplex assay targeting 24 eye and hair colour predictive DNA variants including all 6 IrisPlex SNPs, as well as two prediction models, a newly developed model for hair colour categories and shade, and the previously developed IrisPlex model for eye colour. The HIrisPlex assay was designed to cope with low amounts of template DNA, as well as degraded DNA, and preliminary sensitivity testing revealed full DNA profiles down to 63pg input DNA. The power of the HIrisPlex system to predict hair colour was assessed in 1551 individuals from three different parts of Europe showing different hair colour frequencies. Using a 20% subset of individuals, while 80% were used for model building, the individual-based prediction accuracies employing a prediction-guided approach were 69.5% for blond, 78.5% for brown, 80% for red and 87.5% for black hair colour on average. Results from HIrisPlex analysis on worldwide DNA samples imply that HIrisPlex hair colour prediction is reliable independent of bio-geographic ancestry (similar to previous IrisPlex findings for eye colour). We furthermore demonstrate that it is possible to infer with a prediction accuracy of >86% if a brown-eyed, black-haired individual is of non-European (excluding regions nearby Europe) versus European (including nearby regions) bio-geographic origin solely from the strength of HIrisPlex eye and hair colour probabilities, which can provide extra intelligence for future forensic applications. The HIrisPlex system introduced here, including a single multiplex test assay, an interactive tool and prediction guide, and recommendations for reporting final outcomes, represents the first tool for simultaneously establishing categorical eye and hair colour of a person from DNA. The practical forensic application of the HIrisPlex system is expected to benefit cases where other avenues of investigation, including STR profiling, provide no leads on who the unknown crime scene sample donor or the unknown missing person might be.
1
Across 1,551 European individuals, prediction-guided hair-colour accuracies averaged 69.5% for blond, 78.5% for brown, 80% for red, and 87.5% for black hair.
2
The HIrisPlex system simultaneously predicts hair and eye colour using one multiplex assay targeting 24 predictive DNA variants, including all six IrisPlex SNPs.
3
The assay is designed for low-input and degraded DNA and produced full DNA profiles with inputs as low as 63 pg in preliminary sensitivity testing.
4
The system integrates a new hair-colour category and shade model with the previously validated IrisPlex eye-colour prediction model.
5
Worldwide sample analyses indicated reliable hair-colour prediction across bio-geographic ancestries, and brown-eyed, black-haired individuals could be classified as non-European with over 86% accuracy in the reported analysis.

Human hair and eye colour phenotypes inferred from DNA

Simultaneous prediction accuracy and reliability of hair-colour categories and eye colour from predictive DNA variants, including under low and degraded DNA conditions and across bio-geographic ancestries

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2012-08-20
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Manfred Kayser
Fan Liu
Andreas Wollstein
Wojciech Branicki
Susan Walsh
Leda Kovatsi
Arwin Ralf
A Kosiniak-Kamysz
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