Forensic biobank; towards comprehensive forensic genetic frequency database for the Kenyan population.

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dc.contributor.author Aluvaala Nambati EK, Muge E, Azzam B, Maritim D, Kirosh N, Kamau L, Mpoke S, Cheriro W, Karani L, Sang M, Gosar A, Makwaga O, Eyase L, Wandera HT, Ariga S, Nyabera J, Mwangi M, Kimani F, Bulimo W
dc.date.accessioned 2026-03-31T08:37:48Z
dc.date.available 2026-03-31T08:37:48Z
dc.date.issued 2025-07
dc.identifier.uri https://doi.org/10.1016/j.fsisyn.2025.100633
dc.identifier.uri http://repository.kemri.go.ke:8080/xmlui/handle/123456789/1814
dc.description.abstract Forensic genetic frequency databases (FGFD) are used in estimating the probability of a DNA match in forensic investigations. They provide reference population data that can be used for statistical estimation for the rarity of a genotype, haplotype or a DNA profile in a population hence giving probative value for forensic evidence. Currently, three FGFD databases are recommended by the International Society for Forensic Genetics (ISFG) for forensic use; the Y-Chromosome Haplotype Reference Database (YHRD), the EDNAP Mitochondrial DNA Population Database (EMPOP), and the STRs for Identity ENFSI Reference Database (STRidER). There is need to generate updated and comprehensive genetic frequency data for the Kenyan population in compliance with ethical standards. This study sought to develop a forensic biobank to facilitate generation of comprehensive genetic frequency data for the Kenyan population. A total of 893 samples were collected from study volunteers in compliance with prescribed ethical standards. The data set comprises 60.8 % Bantu, 24.9 % Nilotic, and 14.3 % Cushitic samples closely mirroring current population structure in Kenya. The samples are currently stored in duplicate as FTA cards and extracted DNA. 132 quality mitogenome reference data has been generated for the coastal region in Kenya. With the broad consent obtained, the resource will be used to generate additional mitogenome reference data for other geographical regions, Y-chromosome haplotype and autosomal STRs for inclusion in recommended forensic databases as per revised guidelines. With the emergence of new technologies in forensic genetics, we anticipate the resource will be valuable in forensic genetics validation studies in future. en_US
dc.language.iso en en_US
dc.publisher Forensic Sci Int Synerg. en_US
dc.subject Forensic biobankComprehensiveForensic genetic frequency databasesKenya en_US
dc.title Forensic biobank; towards comprehensive forensic genetic frequency database for the Kenyan population. en_US
dc.type Article en_US


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