Literature DB >> 35211970

Exploring likelihood ratios assigned for siblings of the true mixture contributor as an alternate contributor.

Hannah Kelly1, Michael Coble2, Maarten Kruijver1, Richard Wivell1, Jo-Anne Bright1.   

Abstract

Relatives tend to have more DNA in common than unrelated people. The closer the biological relationship, the higher the chance of alleles being identical by descent between the individuals. Therefore, when considering a mixed DNA profile, close relatives of the true contributor may not always be excluded as a possible contributor to a mixture due to allele sharing. In these situations, it might be more appropriate under the alternate proposition to consider that the DNA could have originated from a relative of the person of interest rather than an unrelated individual. The probabilistic genotyping software STRmix™ automatically provides LRs considering close biological relatives as alternate sources of the DNA. In this paper, we investigate the support for siblings of the true contributor to a mixture (who are not present in the mixture themselves). We interpret the mixtures and assign LRs using STRmix™ and investigate whether the resulting LRs could be used to indicate whether the true contributor could be a sibling of the POI. Most siblings will have one or more alleles that are not observed in the mixture profile. Support for siblings to have contributed can only occur when allelic dropout is a possibility at the loci where the siblings have alleles that are not observed in the profile. In these data, that was only observed in components with assigned template of 588 rfu or less.
© 2022 American Academy of Forensic Sciences.

Entities:  

Keywords:  interpretation of DNA mixtures; likelihood ratios; probabilistic genotyping; relatives; sibling LR

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Year:  2022        PMID: 35211970     DOI: 10.1111/1556-4029.15020

Source DB:  PubMed          Journal:  J Forensic Sci        ISSN: 0022-1198            Impact factor:   1.832


  1 in total

1.  Probabilistic Genotyping of Single Cell Replicates from Mixtures Involving First-Degree Relatives Prevents the False Inclusions of Non-Donor Relatives.

Authors:  Kaitlin Huffman; Jack Ballantyne
Journal:  Genes (Basel)       Date:  2022-09-15       Impact factor: 4.141

  1 in total

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