Calculating likelihood ratios for a mixed DNA profile when a contribution from a genetic relative of a suspect is proposed.

Sci Justice

Forensic Science Service, Trident Court, Solihull Parkway, Birmingham Business Park B377YN, UK.

Published: December 2010

AI Article Synopsis

  • This technical note presents a method for evaluating evidence from a two-person conditioned DNA mixture, focusing on cases where an unknown contributor is believed to be genetically related to the suspect.
  • The scenario typically involves DNA samples from a complainant and a suspect, such as in alleged rape cases, where the complainant's DNA is expected in the mixture.
  • The authors outline a practical approach, including a flow chart and reference tables, to perform manual calculations of the likelihood ratio for various genetic relationships under the defense proposition.

Article Abstract

This technical note describes a practical method for evaluating evidence in the case of a two person conditioned DNA mixture where the defence proposition is that the unknown contributor is genetically related to the suspect. A conditioned mixture is one where the presence of DNA from one of two individuals is accepted by both prosecution and defence. A typical example would be a vaginal swab in an alleged rape case, where the presence of the complainant's DNA would be expected and samples have been taken from the complainant and a suspect. Much has been written about the interpretation of such mixtures and the calculation of the conditional genotype probabilities that must be carried out. In general, such treatments assume that the unknown contributor, under the defence proposition, is unrelated to the known individuals. In this paper, we consider the case where the defence proposition is that the unknown contributor is genetically related to the suspect. We describe a method, incorporating a flow chart and reference tables that facilitate manual calculations of the likelihood ratio for several postulated genetic relationships.

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Source
http://dx.doi.org/10.1016/j.scijus.2010.02.001DOI Listing

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