Pedigree-Based Estimation of Y-STR Mutation and Male Differentiation Rates: Application to Historical Remains Identification

, , , , Mitchell, Natasha, & (2025) Pedigree-Based Estimation of Y-STR Mutation and Male Differentiation Rates: Application to Historical Remains Identification. Genes, 16(10), Article number: 1211.

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Description

<p>Background/Objectives: High differentiation rates provided by Y-chromosomal short tandem repeats (Y-STRs) are highly advantageous in most forensic and genealogical casework, as they enhance the ability to exclude close or moderately related individuals, refine an individual’s position within a pedigree, and uncover the population substructure in otherwise homogeneous groups. However, the impact for historical remains identification casework is underexplored. Methods: We present a pedigree analysis of 366 males from 183 pedigrees, separated by 4 to 16 meioses at 27 Y-STR loci, from the Yfiler Plus kit. The differentiation rate for a given degree of separation was defined as the proportion of pairs at that specific number of meioses showing at least one allelic difference, relative to the total number of such pairs. Results: Our pedigree-based locus-specific mutation rates were consistent with published father–son values for 22 of 25 loci, with 3 loci (DYS389II, DYS449, and DYS570) being significantly different (p < 0.05). These results were consistent with previous pedigree-based estimates, and the strong agreement between father–son and pedigree-based mutation rates supports the use of pedigrees as a reliable method for estimating mutation rates. The probability of differentiating male relatives reached 60.1%, which is similar to previous studies using the Yfiler Plus kit. Conclusions: This high male differentiation rate is advantageous for distinguishing unrelated individuals within the same population, reducing false inclusions. However, when comparing distantly related individuals, excessive mutations accumulated over many generations may obscure genuine patrilineal relationships, increasing the risk of false exclusions. Our findings are likely to be highly valuable for future interpretation of Y-STR haplotypes from patrilineal relatives across a wide range of applications, with significant relevance to historical remains identification casework.</p>

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ID Code: 262820
Item Type: Contribution to Journal (Journal Article)
Refereed: Yes
ORCID iD:
Connell, Jasmine R.orcid.org/0000-0003-4155-5750
Griffiths, Lyn R.orcid.org/0000-0002-6774-5475
Additional Information: Publisher Copyright: © 2025 by the authors.
Measurements or Duration: 13 pages
Keywords: historical remains, human identification, male differentiation, mutation rate, Y-STR, Yfiler Plus
DOI: 10.3390/genes16101211
ISSN: 2073-4425
Pure ID: 216022425
Divisions: Current > Research Centres > Centre for Genomics and Personalised Health
Current > QUT Faculties and Divisions > Faculty of Health
Current > Schools > School of Biomedical Sciences
Funding Information: We wish to acknowledge the family members of missing servicemembers who generously donated their DNA samples and time to participate in this research study and for the ongoing community support which aids our research. This research was supported by a Defence Innovation Hub contract. We also wish to acknowledge past and present staff of Unrecovered War Casualties-Army, who have provided invaluable support, including Aaron Pegram and Cameron Clarke. This study was supported by the Department of Defence Innovation Hub (P19-209484).
Copyright Owner: Consult author(s) regarding copyright matters
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Deposited On: 27 Jan 2026 09:43
Last Modified: 24 Jul 2026 06:42