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Gusmão L, Antão-Sousa S, Faustino M, Abovich MA, Aguirre D, Alghafri R, Alves C, Amorim A, Arévalo C, Baldassarri L, Barletta-Carrillo C, Berardi G, Bobillo C, Borjas L, Braganholi DF, Brehm A, Builes JJ, Cainé L, Carvalho EF, Carvalho M, Catelli L, Cicarelli RMB, Contreras A, Corach D, Di Marco FG, Diederiche MV, Domingues P, Espinoza M, Fernandéz JM, García MG, García O, Gaviria A, Gomes I, Grattapaglia D, Henao J, Hernandez A, Ibarra AA, Lima G, Manterola IM, Marrero C, Martins JA, Mendoza L, Mosquera A, Nascimento EC, Onofri V, Pancorbo MM, Pestano JJ, Plaza G, Porto MJ, Posada YC, Rebelo ML, Riego E, Rodenbusch R, Rodríguez A, Rodríguez A, Sanchez-Diz P, Santos S, Simão F, Siza Fuentes LM, Sumita D, Tomas C, Toscanini U, Trindade-Filho A, Turchi C, Vullo C, Yurrebaso I, Pereira V, Pinto N. X-chromosomal STRs: Metapopulations and mutation rates. Forensic Sci Int Genet 2025; 76:103232. [PMID: 39893847 DOI: 10.1016/j.fsigen.2025.103232] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 09/06/2024] [Revised: 01/15/2025] [Accepted: 01/26/2025] [Indexed: 02/04/2025]
Abstract
The analysis of STRs located on the X chromosome has been one of the strategies used to address complex kinship cases. Its usefulness is, however, limited by the low availability of population haplotype frequency data and lack of knowledge on the probability of mutations. Due to the large amount of data required to obtain reliable estimates, it is important to investigate the possibility of grouping data from populations with similar profiles when calculating these parameters. To better understand the partition of genetic diversity among human populations for the X-STRs most used in forensics, an analysis was carried out based on data available in the literature and new data (23,949 haplotypes in total; from these 10,445 new) obtained through collaborative exercises within the Spanish and Portuguese Working Group of the International Society for Forensic Genetics. Based on the available population data, a similarity in X-STR profiles was found in European populations, and in East Asian populations, except for some isolates. A greater complexity was found for African, South American, and South and Southeast Asian populations, preventing their grouping into large metapopulations. New segregation data on 2273 father/mother/daughter trios were also obtained, aiming for a more thorough analysis of X-STR mutation rates. After combining our data with published information on father/mother/daughter trios, no mutations were detected in 13 out of 37 loci analyzed. For the remaining loci, mutation rates varied between 2.68 × 10-4 (DXS7133) and 1.07x10-2 (DXS10135), being 5.2 times higher in the male (4.16 ×10-3) than in the female (8.01 ×10-4) germline.
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Affiliation(s)
- L Gusmão
- DNA Diagnostic Laboratory, State University of Rio de Janeiro (UERJ), Rio de Janeiro, Brazil
| | - S Antão-Sousa
- Instituto de Patologia e Imunologia Molecular da Universidade do Porto (IPATIMUP), Portugal; Instituto de Investigação e Inovação em Saúde (i3S), Porto, Portugal; Departamento de Biologia, Faculdade de Ciências da Universidade do Porto (FCUP), Porto, Portugal
| | - M Faustino
- Instituto de Investigação e Inovação em Saúde (i3S), Porto, Portugal; Departamento de Biologia, Faculdade de Ciências da Universidade do Porto (FCUP), Porto, Portugal
| | - M A Abovich
- Banco Nacional de Datos Genéticos, Buenos Aires, Argentina and Sección Histocompatibilidad, Unidad Inmunología e Histocompatibilidad, Hospital General de Agudos Dr. Carlos G. Durand, CABA, Buenos Aires, Argentina
| | - D Aguirre
- Laboratorio Genes SAS, Medellín, Colombia
| | - R Alghafri
- General Department of Forensic Sciences and Criminology, Dubai Police General Head Quarters, Dubai, United Arab Emirates
| | - C Alves
- Instituto de Patologia e Imunologia Molecular da Universidade do Porto (IPATIMUP), Portugal
| | - A Amorim
- Instituto de Patologia e Imunologia Molecular da Universidade do Porto (IPATIMUP), Portugal; Instituto de Investigação e Inovação em Saúde (i3S), Porto, Portugal; Departamento de Biologia, Faculdade de Ciências da Universidade do Porto (FCUP), Porto, Portugal
| | - C Arévalo
- Laboratorio Biología-ADN, Comisaría General de Policía Científica, Madrid, Spain and Instituto Universitario de Investigación en Ciencias Policiales (IUICP), Universidad de Alcalá de Henares, Madrid, Spain
| | - L Baldassarri
- Laboratorio di Genetica Forense de la Università Cattolica del Sacro Cuore di Roma, Rome, Italy
| | - C Barletta-Carrillo
- Laboratorio de Genética Humana, Universidad Nacional Mayor de San Marcos, Lima, Peru
| | - G Berardi
- PRICAI - Fundación Favaloro, Buenos Aires, Argentina
| | - C Bobillo
- Servicio de Huellas Digitales Genéticos (SHDG) and Cátedra de Genética y Bioquímica Molecular, Facultad de Farmacia y Bioquímica, Universidad de Buenos Aires, Argentina
| | - L Borjas
- Laboratorio de Genética Molecular, Unidad de Genética Médica, Facultad de Medicina, Universidad del Zulia, Zulia, Venezuela
| | - D F Braganholi
- Laboratório de Investigação de Paternidade-NAC, Faculdade de Ciências Farmacêuticas, Universidade Estadual Paulista (UNESP), Araraquara, São Paulo, Brazil
| | - A Brehm
- Laboratório de Genética Humana, Universidade da Madeira, Campus da Penteada, Funchal, Portugal
| | - J J Builes
- Laboratorio Genes SAS, Medellín, Colombia
| | - L Cainé
- Serviço de Genética e Biologia Forenses, Instituto Nacional de Medicina Legal e Ciências Forenses, I.P. - Delegação do Norte, Porto, Portugal; Faculdade de Medicina da Universidade do Porto, Portugal
| | - E F Carvalho
- DNA Diagnostic Laboratory, State University of Rio de Janeiro (UERJ), Rio de Janeiro, Brazil
| | - M Carvalho
- Serviço de Genética e Biologia Forenses, Instituto Nacional de Medicina Legal e Ciências Forenses, I.P. - Delegação do Centro, Coimbra, Portugal
| | - L Catelli
- DNA Forensic Laboratory, Argentinean Forensic Anthropology Team (EAAF), Córdoba, Argentina
| | - R M B Cicarelli
- Laboratório de Investigação de Paternidade-NAC, Faculdade de Ciências Farmacêuticas, Universidade Estadual Paulista (UNESP), Araraquara, São Paulo, Brazil
| | - A Contreras
- Laboratorio Regional de Genética Forense - Poder Judicial de Rio Negro, Rio Negro, Argentina
| | - D Corach
- Servicio de Huellas Digitales Genéticos (SHDG) and Cátedra de Genética y Bioquímica Molecular, Facultad de Farmacia y Bioquímica, Universidad de Buenos Aires, Argentina
| | - F G Di Marco
- Laboratorio ManLab, Area de Filiaciones, Buenos Aires, Argentina
| | - M V Diederiche
- Departamento de Ciências Biológicas, Universidade Estadual de Santa Cruz - UESC, Ilhéus, Bahia, Brazil
| | - P Domingues
- DNA Diagnostic Laboratory, State University of Rio de Janeiro (UERJ), Rio de Janeiro, Brazil
| | - M Espinoza
- Departamento de Ciencias Forenses, Sección de Bioquímica, Unidad de Genética Forense, Poder Judicial, San José, Costa Rica
| | - J M Fernandéz
- Departamento de Biología, Servicio de Criminalística, Dirección General de la Policía y la Guardia Civil, ámbito Guardia Civil, Spain
| | - M G García
- Laboratorio ManLab, Area de Filiaciones, Buenos Aires, Argentina
| | - O García
- Sección de Genética Forense, Area de Laboratorio Ertzaintza, Bizkaia, Spain
| | - A Gaviria
- Laboratorio de Genética Molecular and Hemocentro Nacional - Cruz Roja Ecuatoriana, Quito, Ecuador
| | - I Gomes
- Instituto de Patologia e Imunologia Molecular da Universidade do Porto (IPATIMUP), Portugal; Instituto de Investigação e Inovação em Saúde (i3S), Porto, Portugal
| | - D Grattapaglia
- Heréditas Tecnologia em Análise de DNA, Brasília, Brazil
| | - J Henao
- Laboratorio de Genética Médica, Universidad Tecnológica de Pereira, Facultad de Ciencias de la Salud, Pereira, Colombia
| | - A Hernandez
- Instituto Nacional de Toxicología y Ciencias Forenses, Delegación de Canarias, Santa Cruz de Tenerife, Spain
| | - A A Ibarra
- Laboratorio IdentiGEN - Universidad de Antioquia, Medellín, Colombia
| | - G Lima
- Serviço de Genética e Biologia Forenses, Instituto Nacional de Medicina Legal e Ciências Forenses, I.P. - Delegação do Norte, Porto, Portugal
| | - I M Manterola
- Servicio Genómica - SGIker - Universidad del País Vasco (UPV-EHU), Bilbao, Spain
| | - C Marrero
- Laboratorio Genomik C.A., Valencia, Venezuela
| | - J A Martins
- Research Centre for Biochemistry and Molecular Biology at the Medical School of São José do Rio Preto (FAMERP), São José do Rio Preto, São Paulo, Brazil
| | - L Mendoza
- Laboratorio Genes SAS, Medellín, Colombia
| | - A Mosquera
- Forensic Genetics Unit, University of Santiago de Compostela, Santiago de Compostela, Spain
| | - E C Nascimento
- Coordenação de Genética Forense, Departamento de Polícia Técnica da Bahia, Salvador, Brazil
| | - V Onofri
- Legal Medicine Unit, Azienda Ospedaliero-Universitaria delle Marche, Ancona, Italy
| | - M M Pancorbo
- Banco de ADN, Universidad del País Vasco (UPV/EHU), Vitoria, Gasteiz, Spain
| | - J J Pestano
- Laboratorio de Genética Forense, Facultad de Medicina, Universidad de Las Palmas de Gran Canaria, Las Palmas, Spain
| | - G Plaza
- NEODIAGNOSTICA, SL, Lleida, Spain
| | - M J Porto
- Serviço de Genética e Biologia Forenses, Instituto Nacional de Medicina Legal e Ciências Forenses, I.P. - Delegação do Centro, Coimbra, Portugal
| | - Y C Posada
- Laboratorio IdentiGEN - Universidad de Antioquia, Medellín, Colombia
| | - M L Rebelo
- Serviço de Genética e Biologia Forenses, Instituto Nacional de Medicina Legal e Ciências Forenses, I.P. - Delegação do Norte, Porto, Portugal
| | - E Riego
- Unidad de Parentesco e Identificación Humana por ADN, Referencia Laboratorio Clínico, Dominican Republic
| | - R Rodenbusch
- Laboratório PeritosLab Forense, Porto Alegre, Brazil
| | - A Rodríguez
- Departamento de Ciencias Forenses, Sección de Bioquímica, Unidad de Genética Forense, Poder Judicial, San José, Costa Rica
| | - A Rodríguez
- Forensic Genetics Unit, University of Santiago de Compostela, Santiago de Compostela, Spain
| | | | - S Santos
- Human and Medical Genetics Laboratory, Federal University of Pará, Belém, Brazil
| | - F Simão
- DNA Diagnostic Laboratory, State University of Rio de Janeiro (UERJ), Rio de Janeiro, Brazil
| | | | - D Sumita
- Genomic Engenharia Molecular Ltda., São Paulo, Brasil
| | - C Tomas
- Section of Forensic Genetics - Department of Forensic Medicine, Faculty of Health and Medical Sciences - University of Copenhagen, Copenhagen, Denmark
| | - U Toscanini
- PRICAI - Fundación Favaloro, Buenos Aires, Argentina
| | - A Trindade-Filho
- Instituto de Pesquisa de DNA Forense - Polícia Civil do Distrito Federal, Brasília, Brazil
| | - C Turchi
- Section of Legal Medicine, Department of Biomedical Sciences and Public Health, Polytechnic University of Marche, Ancona, Italy
| | - C Vullo
- DNA Forensic Laboratory, Argentinean Forensic Anthropology Team (EAAF), Córdoba, Argentina
| | - I Yurrebaso
- Sección de Genética Forense, Area de Laboratorio Ertzaintza, Bizkaia, Spain
| | - V Pereira
- Section of Forensic Genetics - Department of Forensic Medicine, Faculty of Health and Medical Sciences - University of Copenhagen, Copenhagen, Denmark
| | - N Pinto
- Instituto de Patologia e Imunologia Molecular da Universidade do Porto (IPATIMUP), Portugal; Centro de Matemática da Universidade do Porto (CMUP), Porto, Portugal.
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Calò L, Gentile F, Baio E, Raschellà C, Capelli C, Marino A. Variability and forensic efficiency of 12 X-STR markers in Namibian populations. Int J Legal Med 2024; 138:2289-2298. [PMID: 39105780 PMCID: PMC11490519 DOI: 10.1007/s00414-024-03299-9] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Grants] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 03/29/2024] [Accepted: 07/16/2024] [Indexed: 08/07/2024]
Abstract
STR loci localized on the X chromosome provide information additional to the autosomal markers routinely analyzed in forensic genetics, integrating genetic systems as Y-STRs and mitochondrial DNA in the investigation of complex kinship scenarios and mass disaster cases.In this study we genotyped 12 X-STR loci in 251 male samples from four populations of Namibia in southern Africa using the Investigator Argus X-12 kit (Qiagen, Hilden, Germany). Forensic efficiency parameters indicated high power of discrimination in the considered populations. As part of our investigation, we highlighted partial linkage associations between loci within known linkage groups (LGs) and identified several occurrences of previously unreported out-of-ladder (OL) alleles.Genetic distances between the Namibian populations here investigated and other African (Eritrea, Ethiopia, Somalia, Guinea, Cape Verde) and non-African (Germany, China, Philippines) populations using loci grouped in LGs mirrored their biogeographical distribution differently for each linkage group. Haplotype sharing within each LG revealed a high degree of population-specific types, hinting to the potential of these markers for ancestry applications.These results highlight the importance to produce specific and freely available population databases especially for multi-ethnic countries. This novel dataset is expected to be of interest for population studies that need an accessible reference dataset of African regions not currently well represented, as well as possible relevance for forensic applications focusing on the biogeographic origin of samples.
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Affiliation(s)
- Luca Calò
- Reparto Carabinieri Investigazioni Scientifiche di Parma - Sezione Biologia, Parma, Italy
| | - Fabiano Gentile
- Reparto Carabinieri Investigazioni Scientifiche di Parma - Sezione Biologia, Parma, Italy
| | - Elisa Baio
- Department of Chemistry, Life Sciences and Environmental Sustainability, University of Parma, Parma, Italy
| | | | - Cristian Capelli
- Department of Chemistry, Life Sciences and Environmental Sustainability, University of Parma, Parma, Italy.
| | - Alberto Marino
- Reparto Carabinieri Investigazioni Scientifiche di Parma - Sezione Biologia, Parma, Italy.
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Alwi AR, Mahat NA, Mohd Salleh F, Ishar SM, Kamaluddin MR, A Rashid MR, Syed Hassan SNRK. Genetic diversity and forensic statistical support for the 12 X-STR markers in the Malaysian Indian population using Qiagen Investigator® Argus X-12 QS kit. Leg Med (Tokyo) 2024; 68:102416. [PMID: 38325234 DOI: 10.1016/j.legalmed.2024.102416] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 12/02/2023] [Revised: 01/14/2024] [Accepted: 01/26/2024] [Indexed: 02/09/2024]
Abstract
X-chromosome short tandem repeats (X-STRs) are useful for human identification, especially in complex kinship scenarios. Since forensic statistical parameters vary among populations and the X-STRs population data for the diverse population of Peninsular Malaysia's are unavailable, this attempt for Indians (n = 201) appears forensically relevant to support the 12 X-STRs markers' evidential value for human identification in Malaysia. The Qiagen Investigator® Argus X-12 QS kit showed that DXS10135 was the most polymorphic locus with high genetic diversity, polymorphism information richness, heterozygosity, and exclusion power. Based on allele frequencies, the strength of discrimination and mean exclusion chance (MECKrüger, MECKishida, MECDesmarais, and MECDesmaraisDuo) values for the Malaysian Indians were ≥0.999997790686228. As for haplotype frequencies, the overall discrimination power and mean exclusion probability (MECKrüger, MECKishida, MECDesmarais, and MECDesmaraisDuo) were ≥0.9999984801951. The genetic distance, neighbor-joining phylogenetic tree, and principal component analysis also supported the evidential value of the 12 X-STRs markers for forensic practical caseworks in Malaysia.
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Affiliation(s)
- Aedrianee Reeza Alwi
- Department of Biosciences, Faculty of Science, Universiti Teknologi Malaysia (UTM), 81310 Johor Bahru, Johor, Malaysia; Department of Chemistry Malaysia Johor State, Jalan Abdul Samad, 80100 Johor Bahru, Johor, Malaysia.
| | - Naji Arafat Mahat
- Department of Chemistry, Faculty of Science, Universiti Teknologi Malaysia (UTM), 81310 Johor Bahru, Johor, Malaysia; Investigative and Forensic Sciences Research Group, Universiti Teknologi Malaysia (UTM), 81310 Johor Bahru, Johor, Malaysia; Centre for Sustainable Nanomaterials, Ibnu Sina Institute for Scientific and Industrial Research, Universiti Teknologi Malaysia (UTM), 81310 Johor Bahru, Johor, Malaysia; Centre of Research for Fiqh Forensics and Judiciary, Faculty of Syariah and Law, Universiti Sains Islam Malaysia (USIM), Bandar Baru Nilai, 71800 Nilai, Negeri Sembilan, Malaysia.
| | - Faezah Mohd Salleh
- Department of Biosciences, Faculty of Science, Universiti Teknologi Malaysia (UTM), 81310 Johor Bahru, Johor, Malaysia; Investigative and Forensic Sciences Research Group, Universiti Teknologi Malaysia (UTM), 81310 Johor Bahru, Johor, Malaysia.
| | - Seri Mirianti Ishar
- Forensic Science Program, Faculty of Health Sciences, Universiti Kebangsaan Malaysia (UKM), 43600 Bangi, Selangor, Malaysia.
| | - Mohammad Rahim Kamaluddin
- Psychology and Human Well Being Research Centre, Faculty of Social Sciences and Humanities, Universiti Kebangsaan Malaysia (UKM), 43600 Bangi, Selangor, Malaysia.
| | - Mohd Radzniwan A Rashid
- Family Medicine Unit, Faculty of Medicine and Health Science, Universiti Sains Islam Malaysia (USIM), Bandar Baru Nilai, 71800 Nilai, Negeri Sembilan, Malaysia.
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Tomas C, Rodrigues P, Jønck CG, Barekzay Z, Simayijiang H, Pereira V, Børsting C. Performance of a 74-Microhaplotype Assay in Kinship Analyses. Genes (Basel) 2024; 15:224. [PMID: 38397213 PMCID: PMC10888013 DOI: 10.3390/genes15020224] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 01/09/2024] [Revised: 02/07/2024] [Accepted: 02/08/2024] [Indexed: 02/25/2024] Open
Abstract
Microhaplotypes (MHs) consisting of multiple SNPs and indels on short stretches of DNA are new and interesting loci for forensic genetic investigations. In this study, we analysed 74 previously defined MHs in two of the populations that our laboratory provides with forensic genetic services, Danes and Greenlanders. In addition to the 229 SNPs that originally made up the 74 MHs, 66 SNPs and 3 indels were identified in the two populations, and 45 of these variants were included in new definitions of the MHs, whereas 24 SNPs were considered rare and of little value for case work. The average effective number of alleles (Ae) was 3.2, 3.0, and 2.6 in Danes, West Greenlanders, and East Greenlanders, respectively. High levels of linkage disequilibrium were observed in East Greenlanders, which reflects the characteristics of this population that has a small size, and signs of admixture and substructure. Pairwise kinship simulations of full siblings, half-siblings, first cousins, and unrelated individuals were performed using allele frequencies from MHs, STRs and SNPs from Danish and Greenlandic populations. The MH panel outperformed the currently used STR and SNP marker sets and was able to differentiate siblings from unrelated individuals with a 0% false positive rate and a 1.1% false negative rate using an LR threshold of 10,000 in the Danish population. However, the panel was not able to differentiate half-siblings or first cousins from unrelated individuals. The results generated in this study will be used to implement MHs as investigative markers for relationship testing in our laboratory.
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Affiliation(s)
| | | | | | | | | | | | - Claus Børsting
- Section of Forensic Genetics, Department of Forensic Medicine, Faculty of Health and Medical Sciences, University of Copenhagen, Frederik V’s Vej 11, DK-2100 Copenhagen, Denmark; (C.T.); (P.R.); (C.G.J.); (Z.B.); (V.P.)
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Perera N, Wijithalal R, Galhena G, Ranawaka G. Linkage, recombination and mutation rate analyses of 16 X-chromosomal STR loci in Sri Lankan Sinhalese pedigrees. Int J Legal Med 2022; 136:415-422. [PMID: 35022841 DOI: 10.1007/s00414-021-02762-1] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 11/01/2021] [Accepted: 12/01/2021] [Indexed: 11/25/2022]
Abstract
This study investigated genetic linkage, recombination fractions and mutation rates of 16 X chromosomal short tandem repeat (X-STR) markers using a recently developed multiplex PCR assay for Sinhalese population of Sri Lanka, by analyzing 81 three-generation families including 81 grandfathers with daughters and 162 grandsons. In addition, 31 two generation families involving mother father daughter trios were included for mutation analysis. The analysis of recombination fractions between marker pairs identified two linkage blocks (maximum LOD scores > 3.0) each spanning a physical distance of 44.35 Mb and 6.04 Mb respectively. Though recombination events are usually rare among closely linked markers, crossovers were observed for markers located < 1.0 Mb apart. The recombination fractions observed are not fully concordant with those reported earlier, including the second-generation Rutgers combined linkage-physical map. This suggests that linkage is not uniform among different populations. However, the overall and marker-specific mutation rates of the present study did not differ from previous reports, though it needs confirmation with a much larger sample set. The findings presented here will provide the baseline information required for biostatistical calculations conducted using X-STR markers, in complex kinship analysis of Sinhalese population.
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Affiliation(s)
- Nandika Perera
- Genetech Molecular Diagnostics, Colombo 08, Sri Lanka. .,Faculty of Health Sciences, The Open University of Sri Lanka, Nawala, Sri Lanka.
| | - Ruvini Wijithalal
- Department of Zoology and Environment Sciences, University of Colombo, Colombo 03, Sri Lanka
| | - Gayani Galhena
- Department of Zoology and Environment Sciences, University of Colombo, Colombo 03, Sri Lanka
| | - Gaya Ranawaka
- Faculty of Natural Sciences, The Open University of Sri Lanka, Nawala, Sri Lanka
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A reference database of forensic autosomal and gonosomal STR markers in the Tigray population of Ethiopia. Forensic Sci Int Genet 2021; 56:102618. [PMID: 34735940 DOI: 10.1016/j.fsigen.2021.102618] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 04/27/2021] [Revised: 08/31/2021] [Accepted: 10/20/2021] [Indexed: 11/20/2022]
Abstract
Allele frequencies of 21 autosomal STR markers (AmpF/STR GlobalFiler) and haplotype frequencies of 27 Y- and 12 X-STR markers (AmpF/STR YFiler Plus and Investigator Argus X-12, respectively) were investigated in the Tigray population of Ethiopia, representing the main population group in the Tigray regional state of Ethiopia and neighboring Eritrea. For autosomal STR allele frequencies, the average random match probability in the Tigray sample was 2.1 × 10-27. The average locus by locus FST distance calculated comparing autosomal STR allele frequencies from Tigray and from a broad regional reference dataset currently available for the Horn of Africa was 0.003. The Tigray male sample displayed high Y-STR diversity, with complete individualization of haplotypes using the AmpF/STR YFiler Plus panel. Analysis of molecular variance did not detect significant heterogeneity between Y-STR haplotypes observed in the present study and those previously reported in the literature for other Tigray population samples from Ethiopia and Eritrea. Study of the X-STR landscape in Tigray evidenced several distinctive features including: the molecular characterization of a novel null allele at locus DXS10146 with frequency > 1%; allele dependency between loci within linkage groups I and III; significant differences in haplotype distribution compared to other Horn of Africa populations, that should be taken into account in kinship analysis. The collected data can be used as a reference STR database by local forensic genetics services and in genetic identification procedures of victims of human trafficking in the Mediterranean Sea, which frequently involve individuals originating from the Horn of Africa.
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Flores-Espinoza R, Paz-Cruz E, Ruiz-Pozo VA, Lopez-Carrera M, Cabrera-Andrade A, Gusmão L, Burgos G. Investigating genetic diversity in admixed populations from Ecuador. AMERICAN JOURNAL OF PHYSICAL ANTHROPOLOGY 2021; 176:109-119. [PMID: 34169504 DOI: 10.1002/ajpa.24341] [Citation(s) in RCA: 5] [Impact Index Per Article: 1.3] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Subscribe] [Scholar Register] [Received: 02/03/2021] [Revised: 04/21/2021] [Accepted: 05/23/2021] [Indexed: 11/10/2022]
Abstract
OBJECTIVES According to demographic history, Ecuador has experienced shifts in its Native American populations caused by European colonization and the African slave trade. The continuous admixture events among Europeans, Native Americans, and Africans occurred differently in each region of the country, producing a stratified population. Thus, the aim of this study was to investigate the level of genetic substructure in the Ecuadorian Mestizo population. MATERIALS AND METHODS A total of 377 male and 209 female samples were genotyped for two sets of X-chromosomal markers (32 X-Indels and 12 X-STRs). Population analyses performed included Hardy-Weinberg equilibrium tests, LD analysis, PCA, pairwise FST s, and AMOVA. RESULTS Significant levels of LD were observed between markers separated by distances of less than 1 cM, as well as between markers separated by distances varying from 10.891 to 163.53 cM. Among Ecuadorian regions, Amazonia showed the highest average R2 value. DISCUSSION When X-chromosomal and autosomal differentiation values were compared, a sex-biased admixture between European men and Native American and African women was revealed, as well as between African men and Native American women. Moreover, a distinct Native American ancestry was discernible in the Amazonian population, in addition to sex-biased gene flow between Amazonia and the Andes and Pacific coast regions. Overall, these results underline the importance of integrating X chromosome information to achieve a more comprehensive view of the genetic and demographic histories of South American admixed populations.
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Affiliation(s)
- Rodrigo Flores-Espinoza
- Laboratório de Diagnóstico por DNA (LDD), Universidade do Estado do Rio de Janeiro, Rio de Janeiro, Brazil.,Laboratorios de Investigación, Universidad de Las Américas (UDLA), Quito, Ecuador
| | - Elius Paz-Cruz
- Laboratorio de ADN, Fiscalía General del Estado, Quito, Ecuador
| | | | | | - Alejandro Cabrera-Andrade
- Grupo de Bio-Quimioinformática, Universidad de Las Américas (UDLA), Quito, Ecuador.,Carrera de Enfermería, Facultad de Ciencias de la Salud, Universidad de Las Américas (UDLA), Quito, Ecuador
| | - Leonor Gusmão
- Laboratório de Diagnóstico por DNA (LDD), Universidade do Estado do Rio de Janeiro, Rio de Janeiro, Brazil
| | - German Burgos
- Escuela de Medicina, Facultad de Ciencias de la Salud, Universidad de Las Américas (UDLA), Quito, Ecuador.,Grupo de Medicina Xenómica, Universidad de Santiago de Compostela, Santiago de Compostela, Spain
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Perera N, Galhena G, Ranawaka G. X-chromosomal STR based genetic polymorphisms and demographic history of Sri Lankan ethnicities and their relationship with global populations. Sci Rep 2021; 11:12748. [PMID: 34140598 PMCID: PMC8211843 DOI: 10.1038/s41598-021-92314-9] [Citation(s) in RCA: 2] [Impact Index Per Article: 0.5] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Grants] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 01/17/2021] [Accepted: 06/03/2021] [Indexed: 11/23/2022] Open
Abstract
A new 16 X-short tandem repeat (STR) multiplex PCR system has recently been developed for Sr Lankans, though its applicability in evolutionary genetics and forensic investigations has not been thoroughly assessed. In this study, 838 unrelated individuals covering all four major ethnic groups (Sinhalese, Sri Lankan Tamils, Indian Tamils and Moors) in Sri Lanka were successfully genotyped using this new multiplex system. The results indicated a high forensic efficiency for the tested loci in all four ethnicities confirming its suitability for forensic applications of Sri Lankans. Allele frequency distribution of Indian Tamils showed subtle but statistically significant differences from those of Sinhalese and Moors, in contrast to frequency distributions previously reported for autosomal STR alleles. This suggest a sex biased demographic history among Sri Lankans requiring a separate X-STR allele frequency database for Indian Tamils. Substantial differences observed in the patterns of LD among the four groups demand the use of a separate haplotype frequency databases for each individual ethnicity. When analysed together with other 14 world populations, all Sri Lankan ethnicities except Indian Tamils clustered closely with populations from Indian Bhil tribe, Bangladesh and Europe reflecting their shared Indo-Aryan ancestry.
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Affiliation(s)
- Nandika Perera
- Genetech Molecular Diagnostics, Colombo 08, Sri Lanka
- Faculty of Health Sciences, The Open University of Sri Lanka, Nawala, Sri Lanka
| | - Gayani Galhena
- Department of Zoology and Environment Sciences, University of Colombo, Colombo 03, Sri Lanka.
| | - Gaya Ranawaka
- Faculty of Health Sciences, The Open University of Sri Lanka, Nawala, Sri Lanka
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9
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Liu L, Yao J, Huang Y, Gao L, Dai J, Yuan X, Zhang X, Nie S, Hu L. Genetic polymorphisms of 16 X-STR loci in the Hani population from Southwest China. Forensic Sci Res 2021; 7:196-201. [PMID: 35784423 PMCID: PMC9246014 DOI: 10.1080/20961790.2021.1877389] [Citation(s) in RCA: 1] [Impact Index Per Article: 0.3] [Reference Citation Analysis] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 01/27/2023] Open
Affiliation(s)
- Linlin Liu
- School of Forensic Medicine, Kunming Medical University, Kunming, China
- Judicial Expertise Center, Kunming Medical University, Kunming, China
| | - Jinyong Yao
- Honghe Public Security Bureau, Honghe, China
| | | | - Lei Gao
- Honghe Public Security Bureau, Honghe, China
| | - Jiameng Dai
- School of Forensic Medicine, Kunming Medical University, Kunming, China
| | | | - Xiufeng Zhang
- School of Forensic Medicine, Kunming Medical University, Kunming, China
- Judicial Expertise Center, Kunming Medical University, Kunming, China
| | - Shengjie Nie
- School of Forensic Medicine, Kunming Medical University, Kunming, China
- Judicial Expertise Center, Kunming Medical University, Kunming, China
| | - Liping Hu
- School of Forensic Medicine, Kunming Medical University, Kunming, China
- Judicial Expertise Center, Kunming Medical University, Kunming, China
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10
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Perera N, Galhena G, Ranawaka G. Development of a 16 X-STR multiplex PCR system for kinship analysis and its applicability for the Sinhalese population in Sri Lanka. Int J Legal Med 2020; 135:161-166. [PMID: 33140262 DOI: 10.1007/s00414-020-02450-6] [Citation(s) in RCA: 3] [Impact Index Per Article: 0.6] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 08/10/2020] [Accepted: 10/26/2020] [Indexed: 10/23/2022]
Abstract
The study describes the development of a new multiplex PCR system that simultaneously amplifies 16 X chromosome short tandem repeats (X-STRs) loci in a single PCR reaction and its applicability on a sample of 200 from the Sinhalese population in Sri Lanka. 13 X-STR loci located in four clusters are selected for the assay (DXS10148-DXS10135-DXS8378, DXS7132-DXS10079-DXS10074-DXS10075, DXS6801-DXS6809-DXS6789 and DXS7424-DXS101-DXS7133). In addition, three single loci were also selected (DXS9902, HPRTB and DXS7423). Genomic DNA extracted using the Chelex-100 method was amplified with modified published primers and subjected to capillary gel electrophoresis. Complete DNA profiles were obtained with 0.20 ng 9947A DNA and the band sizes ranged between 100 and 320 bp with 10 loci having sizes below 237 bp. A total of 160 alleles were observed among the sample with 5-23 alleles for each locus. The forensic efficiency evaluation showed high values for the combined power of discrimination in males (1 in 1 × 1010) and females (1 in 1 × 1017). Combined mean exclusion chance (MEC) indices calculated for deficiency, normal trio and duo cases were equally high (> 0.99999). Application of the new multiplex system to two actual kinship cases of full sibling and deficient paternity suggested that these 16 short tandem repeat loci are highly appropriate for forensic and kinship testing among the Sinhalese population.
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Affiliation(s)
- Nandika Perera
- Genetech Molecular Diagnostics, Colombo, 08, Sri Lanka. .,Faculty of Health Sciences, The Open University of Sri Lanka, Nawala, Sri Lanka.
| | - Gayani Galhena
- Department of Zoology and Environment Sciences, University of Colombo, Colombo, 03, Sri Lanka
| | - Gaya Ranawaka
- Faculty of Health Sciences, The Open University of Sri Lanka, Nawala, Sri Lanka
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11
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Bini C, Sarno S, Tangorra E, Iuvaro A, De Fanti S, Tseghereda YG, Pelotti S, Luiselli D. Haplotype data and forensic evaluation of 23 Y-STR and 12 X-STR loci in eight ethnic groups from Eritrea. Int J Legal Med 2020; 135:449-453. [PMID: 33089342 PMCID: PMC7870587 DOI: 10.1007/s00414-020-02446-2] [Citation(s) in RCA: 4] [Impact Index Per Article: 0.8] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Grants] [Track Full Text] [Download PDF] [Journal Information] [Subscribe] [Scholar Register] [Received: 08/03/2020] [Accepted: 10/14/2020] [Indexed: 11/26/2022]
Abstract
Eritrea is a multi-ethnic country of over 3 million of people consisting of different ethnic groups, having each its own language and cultural tradition. Due to the lack of population genetic data for markers of forensic interest, in this study, we analyzed the genetic polymorphisms of 23 Y-chromosome STR loci and of 12 X-chromosome STR loci in a sample of 255 unrelated individuals from 8 Eritrean ethnic groups, with the aim to generate a reference haplotype database for anthropological and forensic applications. X- and Y-chromosomes markers may indeed offer information especially in personal identification and kinship testing, when relying on the availability of large local population data to derive sufficiently accurate frequency estimates. The population genetic analyses in the Eritrean sample for both the two set of Y- and X-STR markers showed high power of discrimination both at country-based and population levels. Comparison population results highlight the importance of considering the ethnic composition within the analyzed country and the necessity of increasing available data especially when referring to heterogeneous populations such as the African ones.
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Affiliation(s)
- Carla Bini
- Department of Medical and Surgical Sciences, Unit of Legal Medicine, University of Bologna, via Irnerio, 49, 40126 Bologna, Italy
| | - Stefania Sarno
- Department of Biological, Geological and Environmental Sciences-Lab. of Molecular Anthropology & Centre for Genome Biology, University of Bologna, Via Selmi 3, 40126 Bologna, Italy
| | - Elisabetta Tangorra
- Department of Medical and Surgical Sciences, Unit of Legal Medicine, University of Bologna, via Irnerio, 49, 40126 Bologna, Italy
| | - Alessandra Iuvaro
- Department of Medical and Surgical Sciences, Unit of Legal Medicine, University of Bologna, via Irnerio, 49, 40126 Bologna, Italy
| | - Sara De Fanti
- Department of Biological, Geological and Environmental Sciences-Lab. of Molecular Anthropology & Centre for Genome Biology, University of Bologna, Via Selmi 3, 40126 Bologna, Italy
- Interdepartmental Centre “Alma Mater Research Institute on Global Challenges and Climate Change (Alma Climate)”, University of Bologna, Bologna, Italy
| | | | - Susi Pelotti
- Department of Medical and Surgical Sciences, Unit of Legal Medicine, University of Bologna, via Irnerio, 49, 40126 Bologna, Italy
| | - Donata Luiselli
- Department of Biological, Geological and Environmental Sciences-Lab. of Molecular Anthropology & Centre for Genome Biology, University of Bologna, Via Selmi 3, 40126 Bologna, Italy
- Department of Cultural Heritage, Ravenna Campus, University of Bologna, Via degli Ariani 1, 48121 Ravenna, Italy
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12
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Gomes I, Pinto N, Antão-Sousa S, Gomes V, Gusmão L, Amorim A. Twenty Years Later: A Comprehensive Review of the X Chromosome Use in Forensic Genetics. Front Genet 2020; 11:926. [PMID: 33093840 PMCID: PMC7527635 DOI: 10.3389/fgene.2020.00926] [Citation(s) in RCA: 25] [Impact Index Per Article: 5.0] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 05/31/2020] [Accepted: 07/24/2020] [Indexed: 12/12/2022] Open
Abstract
The unique structure of the X chromosome shaped by evolution has led to the present gender-specific genetic differences, which are not shared by its counterpart, the Y chromosome, and neither by the autosomes. In males, recombination between the X and Y chromosomes is limited to the pseudoautosomal regions, PAR1 and PAR2; therefore, in males, the X chromosome is (almost) entirely transmitted to female offspring. On the other hand, the X chromosome is present in females with two copies that recombine along the whole chromosome during female meiosis and that is transmitted to both female and male descendants. These transmission characteristics, besides the obvious clinical impact (sex chromosome aneuploidies are extremely frequent), make the X chromosome an irreplaceable genetic tool for population genetic-based studies as well as for kinship and forensic investigations. In the early 2000s, the number of publications using X-chromosomal polymorphisms in forensic and population genetic applications increased steadily. However, nearly 20 years later, we observe a conspicuous decrease in the rate of these publications. In light of this observation, the main aim of this article is to provide a comprehensive review of the advances and applications of X-chromosomal markers in population and forensic genetics over the last two decades. The foremost relevant topics are addressed as: (i) developments concerning the number and types of markers available, with special emphasis on short tandem repeat (STR) polymorphisms (STR nomenclatures and practical concerns); (ii) overview of worldwide population (frequency) data; (iii) the use of X-chromosomal markers in (complex) kinship testing and the forensic statistical evaluation of evidence; (iv) segregation and mutation studies; and (v) current weaknesses and future prospects.
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Affiliation(s)
- Iva Gomes
- Institute for Research and Innovation in Health Sciences (i3S), University of Porto, Porto, Portugal.,Institute of Molecular Pathology and Immunology, University of Porto (IPATIMUP), Porto, Portugal
| | - Nádia Pinto
- Institute for Research and Innovation in Health Sciences (i3S), University of Porto, Porto, Portugal.,Institute of Molecular Pathology and Immunology, University of Porto (IPATIMUP), Porto, Portugal.,Center of Mathematics, Faculty of Sciences, University of Porto, Porto, Portugal
| | - Sofia Antão-Sousa
- Institute for Research and Innovation in Health Sciences (i3S), University of Porto, Porto, Portugal.,Institute of Molecular Pathology and Immunology, University of Porto (IPATIMUP), Porto, Portugal.,Department of Biology, Faculty of Sciences, University of Porto, Porto, Portugal.,DNA Diagnostic Laboratory (LDD), State University of Rio de Janeiro (UERJ), Rio de Janeiro, Brazil
| | - Verónica Gomes
- Institute for Research and Innovation in Health Sciences (i3S), University of Porto, Porto, Portugal.,Institute of Molecular Pathology and Immunology, University of Porto (IPATIMUP), Porto, Portugal
| | - Leonor Gusmão
- DNA Diagnostic Laboratory (LDD), State University of Rio de Janeiro (UERJ), Rio de Janeiro, Brazil
| | - António Amorim
- Institute for Research and Innovation in Health Sciences (i3S), University of Porto, Porto, Portugal.,Institute of Molecular Pathology and Immunology, University of Porto (IPATIMUP), Porto, Portugal.,Department of Biology, Faculty of Sciences, University of Porto, Porto, Portugal
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13
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Tao R, Zhang J, Xia R, Yang Z, Wang S, Zhang X, Yang Q, Zhang S, Li C. Genetic investigation and phylogenetic analysis of three Chinese ethnic groups using 16 X chromosome STR loci. Ann Hum Biol 2020; 47:59-64. [PMID: 32064953 DOI: 10.1080/03014460.2019.1704871] [Citation(s) in RCA: 5] [Impact Index Per Article: 1.0] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 01/23/2023]
Abstract
Background: The value of using X-chromosomal short tandem repeats (X-STRs) as genetic markers in human genetics has been widely recognised. However, the 16 X-STRs in the Goldeneye® DNA ID System 17X kit have not been thoroughly applied.Aim: To investigate the genetic polymorphisms of 16 X-STRs in three main ethnic minorities (Tibetan, Mongolian and Kazakh) in China and to reveal the phylogenetic relationships of different populations.Subjects and methods: A total of 245 Tibetan, 168 Mongolian and 105 Kazakh individuals were genotyped using this 17X kit. The allelic frequencies and other parameters were calculated. An additional eight Chinese populations and nine global populations were included in genetic comparisons based on 16 or 8 overlapped X-STRs.Results: A total of 147 alleles were observed from 16 X-STRs with allelic frequencies ranging from 0.0024 to 0.7952 in the three studied groups. Based on 16 X-STRs, Tibetans, Kazakhs and Mongolians showed more similarity to each other and were genetically distinct from the Shanghai Han group; based on 8 X-STRs, only the genetic relationships between different nations could be clarified.Conclusions: Our study presents an extensive report on a novel X-STR assay in three Chinese ethnic groups and a comprehensive genetic comparison between different populations based on these X-STRs.
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Affiliation(s)
- Ruiyang Tao
- Shanghai Key Laboratory of Forensic Medicine, Shanghai Forensic Service Platform, Academy of Forensic Sciences, Ministry of Justice, Shanghai, P.R. China.,Institute of Forensic Medicine, West China School of Basic Medical Sciences & Forensic Medicine, Sichuan University, Chengdu, P.R. China
| | - Jingyi Zhang
- Shanghai Key Laboratory of Forensic Medicine, Shanghai Forensic Service Platform, Academy of Forensic Sciences, Ministry of Justice, Shanghai, P.R. China.,Department of Forensic Science, Medical School of Soochow University, Suzhou, P.R. China
| | - Ruocheng Xia
- Shanghai Key Laboratory of Forensic Medicine, Shanghai Forensic Service Platform, Academy of Forensic Sciences, Ministry of Justice, Shanghai, P.R. China.,Department of Forensic Medicine, School of Basic Medical Science, Wenzhou Medical University, Wenzhou, P.R. China
| | - Zihao Yang
- Shanghai Key Laboratory of Forensic Medicine, Shanghai Forensic Service Platform, Academy of Forensic Sciences, Ministry of Justice, Shanghai, P.R. China.,Department of Forensic Medicine, School of Basic Medical Science, Wenzhou Medical University, Wenzhou, P.R. China
| | - Shouyu Wang
- Institute of Forensic Medicine, West China School of Basic Medical Sciences & Forensic Medicine, Sichuan University, Chengdu, P.R. China
| | - Xiaochun Zhang
- Shanghai Key Laboratory of Forensic Medicine, Shanghai Forensic Service Platform, Academy of Forensic Sciences, Ministry of Justice, Shanghai, P.R. China.,Department of Forensic Science, Medical School of Soochow University, Suzhou, P.R. China
| | - Qi Yang
- Shanghai Key Laboratory of Forensic Medicine, Shanghai Forensic Service Platform, Academy of Forensic Sciences, Ministry of Justice, Shanghai, P.R. China.,Department of Forensic Science, Medical School of Soochow University, Suzhou, P.R. China
| | - Suhua Zhang
- Shanghai Key Laboratory of Forensic Medicine, Shanghai Forensic Service Platform, Academy of Forensic Sciences, Ministry of Justice, Shanghai, P.R. China
| | - Chengtao Li
- Shanghai Key Laboratory of Forensic Medicine, Shanghai Forensic Service Platform, Academy of Forensic Sciences, Ministry of Justice, Shanghai, P.R. China.,Institute of Forensic Medicine, West China School of Basic Medical Sciences & Forensic Medicine, Sichuan University, Chengdu, P.R. China
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14
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Paternal and maternal mutations in X-STRs: A GHEP-ISFG collaborative study. Forensic Sci Int Genet 2020; 46:102258. [PMID: 32066109 DOI: 10.1016/j.fsigen.2020.102258] [Citation(s) in RCA: 6] [Impact Index Per Article: 1.2] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 06/19/2019] [Revised: 10/06/2019] [Accepted: 01/29/2020] [Indexed: 11/22/2022]
Abstract
The GHEP-ISFG organized a collaborative study to estimate mutation rates for the markers included in the Investigator Argus X-12 QS kit Qiagen. A total of 16 laboratories gathered data from 1,612 father/mother/daughter trios, which were used to estimate both maternal and paternal mutation rates, when pooled together with other already published data. Data on fathers and mothers' age at the time of birth of the daughter were also available for ∼93 % of the cases. Population analyses were computed considering the genetic information of a subset of 1,327 unrelated daughters, corresponding to 2,654 haplotypes from residents in several regions of five countries: Argentina, Brazil, Ecuador, Portugal and Spain. Genetic differentiation analyses between the population samples from the same country did not reveal signs of significant stratification, although results from Hardy-Weinberg and linkage disequilibrium tests indicated the need of larger studies for Ecuador and Brazilian populations. The high genetic diversity of the markers resulted in a large number of haplotype combinations, showing the need of huge databases for reliable estimates of their frequencies. It should also be noted the high number of new alleles found, many of them not included in the allelic ladders provided with the kit, as very diverse populations were analyzed. The overall estimates for locus specific average mutation rates varied between 7.5E-04 (for DXS7423) and 1.1E-02 (for DXS10135), the latter being a troublesome figure for kinship analyses. Most of the found mutations (∼92 %) are compatible with the gain or loss of a single repeat. Paternal mutation rates showed to be 5.2 times higher than maternal ones. We also found that older fathers were more prone to transmit mutated alleles, having this trend not been observed in the case of the mothers.
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15
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Bini C, Di Nunzio C, Aneli S, Sarno S, Alù M, Carnevali E, Colao E, Di Nunzio M, Fabbri M, Fattorini P, Grignani P, Piccinini A, Ponzano E, Robino C, Rocchi A, Scarnicci F, Turchi C, Verzeletti A, Pelotti S. Analysis of recombination and mutation events for 12 X-Chr STR loci: A collaborative family study of the Italian Speaking Working Group Ge.F.I. FORENSIC SCIENCE INTERNATIONAL GENETICS SUPPLEMENT SERIES 2019. [DOI: 10.1016/j.fsigss.2019.10.027] [Citation(s) in RCA: 2] [Impact Index Per Article: 0.3] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/24/2022]
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16
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Yang X, Chen Y, Zeng X, Chen L, Liu C, Liu H, Xu Q, Budowle B, Liu C. Linkage, recombination, and mutation rate analyses of 19 X-chromosomal STR loci in Chinese Southern Han pedigrees. Int J Legal Med 2019; 133:1691-1698. [PMID: 31317316 DOI: 10.1007/s00414-019-02121-1] [Citation(s) in RCA: 4] [Impact Index Per Article: 0.7] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 05/12/2019] [Accepted: 07/03/2019] [Indexed: 10/26/2022]
Abstract
From Southern Han Chinese samples, we analyzed 19 X-STR markers for linkage, linkage disequilibrium (LD), and mutation rate. The data were collected from two- and three-generation Southern Han Chinese families. These data suggested that both linkage and linkage disequilibrium should be considered while calculating likelihood ratios with X-STR markers in relationship tests. The linkage disequilibrium of these 19 X-STR markers was calculated in our previous research study that was conducted on Southern Han Chinese population. In this study, the recombination fractions between pairs of markers and those obtained from the second-generation Rutgers combined linkage-physical map of the human genome were compared. The observed differences indicated that recombination was not homogeneous along the X chromosome. Therefore, we evaluated the effect on likelihood calculations by referring to haplotype frequencies obtained from allele distributions rather than haplotype counts of Southern Han Chinese population.
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Affiliation(s)
- Xingyi Yang
- Guangzhou Forensic Science Institute, 1708 Baiyun Avenue, Guangzhou, 510030, China
| | - Yutian Chen
- Forensic Science Center of Yuexiu District Branch of Guangzhou Public, Security Bureau in Guangdong Province, Guangzhou, 510080, China
| | - Xiangpei Zeng
- Center for Human Identification, University of North Texas Health Science Center, Ft Worth, TX, USA
| | - Ling Chen
- School of Forensic Medicine, Southern Medical University, Guangzhou, 510515, China
| | - Changhui Liu
- Guangzhou Forensic Science Institute, 1708 Baiyun Avenue, Guangzhou, 510030, China
| | - Hong Liu
- Guangzhou Forensic Science Institute, 1708 Baiyun Avenue, Guangzhou, 510030, China
| | - Quyi Xu
- Guangzhou Forensic Science Institute, 1708 Baiyun Avenue, Guangzhou, 510030, China
| | - Bruce Budowle
- Center for Human Identification, University of North Texas Health Science Center, Ft Worth, TX, USA.
| | - Chao Liu
- Guangzhou Forensic Science Institute, 1708 Baiyun Avenue, Guangzhou, 510030, China. .,School of Forensic Medicine, Southern Medical University, Guangzhou, 510515, China.
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17
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X-chromosome data for 12 STRs: Towards an Argentinian database of forensic haplotype frequencies. Forensic Sci Int Genet 2019; 41:e8-e13. [DOI: 10.1016/j.fsigen.2019.04.005] [Citation(s) in RCA: 12] [Impact Index Per Article: 2.0] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 11/28/2018] [Revised: 04/27/2019] [Accepted: 04/28/2019] [Indexed: 12/29/2022]
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18
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Li Y, Li X, Chen W, Fan Y, Xie M, Wu J. Allele and haplotype frequencies of 19 X-STRs in the Kyrgyz and Han populations from Kizilsu Prefecture. Forensic Sci Int Genet 2019; 40:e259-e261. [DOI: 10.1016/j.fsigen.2019.02.007] [Citation(s) in RCA: 5] [Impact Index Per Article: 0.8] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 11/04/2018] [Revised: 02/06/2019] [Accepted: 02/06/2019] [Indexed: 01/22/2023]
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19
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Population genetic analysis of Chinese Zhuang and Mulao minorities using AGCU-X19 STR kit. Int J Legal Med 2019; 134:501-503. [PMID: 30675640 DOI: 10.1007/s00414-019-02004-5] [Citation(s) in RCA: 9] [Impact Index Per Article: 1.5] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 08/09/2018] [Accepted: 01/16/2019] [Indexed: 10/27/2022]
Abstract
To investigate the genetic variation and forensic efficiency of 19 X-STR loci in the Zhuang and Mulao minorities, we calculated allele frequencies, forensic parameters, and haplotype frequencies of 405 Zhuang and 234 Mulao unrelated healthy individuals from Guangxi Zhuang Autonomous Region of China. Furthermore, we analyzed the population genetic differentiations between the two minorities and other reported Chinese populations.
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20
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Mršić G, Ozretić P, Crnjac J, Merkaš S, Sukser V, Račić I, Rožić S, Barbarić L, Popović M, Korolija M. Expanded Croatian 12 X-STR loci database with an overview of anomalous profiles. Forensic Sci Int Genet 2018; 34:249-256. [PMID: 29573605 DOI: 10.1016/j.fsigen.2018.03.004] [Citation(s) in RCA: 7] [Impact Index Per Article: 1.0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 09/14/2017] [Revised: 01/16/2018] [Accepted: 03/02/2018] [Indexed: 02/08/2023]
Abstract
In order to implement X-chromosome short tandem repeat (X-STR) typing into routine forensic practice, reference database of a given population should be established. Therefore we extended already published data with additional 397 blood samples from unrelated Croatian citizens, and analyzed the total of 995 samples (549 male and 446 female) typed by Investigator® Argus X-12 Kit. To test genetic homogeneity of consecutively processed five historic-cultural regions covering the entire national territory, we calculated pairwise Fst genetic distances between regions based on allele and full haplotype frequencies. Since the comparison did not yield any statistically significant difference, we integrated STR profile information from all regions and used the whole data set to calculate forensic parameters. The most informative marker is DXS10135 (polymorphism information content (PIC = 0.929) and the most informative linkage group (LG) is LG1 (PIC = 0.996). We confirmed linkage disequilibrium (LD) for seven marker pairs belonging to LG2, LG3 and LG4. By including LD information, we calculated cumulative power of discrimination that amounted to 0.999999999997 in females and 0.999999005 in males. We also compared Croatia with 13 European populations based on haplotype frequencies and detected no statistically significant Fst values after Bonferroni correction in any LG. Multi-dimensional scaling plot revealed tight grouping of four Croatian regions amongst populations of southern, central and northern Europe, with the exception of northern Croatia. In this study we gave the first extensive overview of aberrant profiles encountered during Investigator® Argus X-12 typing. We found ten profiles consistent with single locus duplication followed by tetranucleotide tract length polymorphism. Locus DXS10079 is by far the most frequently affected one, presumably mutated in eight samples. We also found four profiles consistent with X-chromosome aneuploidy (three profiles with XXX pattern and one profile with XXY pattern). In conclusion, we established integral forensic Croatian X-chromosome database, proved forensic pertinence of Investigator® Argus X-12 Kit for the entire Croatian population and identified locus DXS10079 as a potential duplication hotspot.
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Affiliation(s)
- Gordan Mršić
- Forensic Science Centre "Ivan Vučetić", Ilica 335, 10000 Zagreb, Croatia; Forensic Science Office, University of Zagreb, Ulica Ivana Lučića 5-6, 10000 Zagreb, Croatia
| | - Petar Ozretić
- Ruđer Bošković Institute, Bijenička cesta 54, 10000 Zagreb, Croatia
| | - Josip Crnjac
- University Department for Forensic Sciences, University of Split, Ruđera Boškovića 31, 21000 Split, Croatia
| | - Siniša Merkaš
- Forensic Science Centre "Ivan Vučetić", Ilica 335, 10000 Zagreb, Croatia; Forensic Science Office, University of Zagreb, Ulica Ivana Lučića 5-6, 10000 Zagreb, Croatia
| | - Viktorija Sukser
- Forensic Science Centre "Ivan Vučetić", Ilica 335, 10000 Zagreb, Croatia; Forensic Science Office, University of Zagreb, Ulica Ivana Lučića 5-6, 10000 Zagreb, Croatia
| | - Ivana Račić
- Forensic Science Centre "Ivan Vučetić", Ilica 335, 10000 Zagreb, Croatia; Forensic Science Office, University of Zagreb, Ulica Ivana Lučića 5-6, 10000 Zagreb, Croatia
| | - Sara Rožić
- Forensic Science Centre "Ivan Vučetić", Ilica 335, 10000 Zagreb, Croatia; Forensic Science Office, University of Zagreb, Ulica Ivana Lučića 5-6, 10000 Zagreb, Croatia
| | - Lucija Barbarić
- Forensic Science Centre "Ivan Vučetić", Ilica 335, 10000 Zagreb, Croatia; Forensic Science Office, University of Zagreb, Ulica Ivana Lučića 5-6, 10000 Zagreb, Croatia
| | - Maja Popović
- Faculty of Veterinary Medicine, University of Zagreb, Heinzelova ulica 55, 10000 Zagreb, Croatia
| | - Marina Korolija
- Forensic Science Centre "Ivan Vučetić", Ilica 335, 10000 Zagreb, Croatia; Forensic Science Office, University of Zagreb, Ulica Ivana Lučića 5-6, 10000 Zagreb, Croatia.
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21
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Almarri MA, Lootah RA. Allelic and haplotype diversity of 12 X-STRs in the United Arab Emirates. Forensic Sci Int Genet 2018; 33:e4-e6. [DOI: 10.1016/j.fsigen.2017.12.013] [Citation(s) in RCA: 12] [Impact Index Per Article: 1.7] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 10/01/2017] [Revised: 12/19/2017] [Accepted: 12/28/2017] [Indexed: 11/17/2022]
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22
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Genetic portrait of Jewish populations based on three sets of X-chromosome markers: Indels, Alu insertions and STRs. Forensic Sci Int Genet 2017; 31:e5-e11. [DOI: 10.1016/j.fsigen.2017.09.008] [Citation(s) in RCA: 11] [Impact Index Per Article: 1.4] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 05/25/2017] [Revised: 08/25/2017] [Accepted: 09/12/2017] [Indexed: 12/19/2022]
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23
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Genetic analysis of 12 X-STR loci in the Serbian population from Vojvodina Province. Int J Legal Med 2017; 132:405-408. [DOI: 10.1007/s00414-017-1677-4] [Citation(s) in RCA: 7] [Impact Index Per Article: 0.9] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 06/19/2017] [Accepted: 08/30/2017] [Indexed: 12/21/2022]
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24
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Gomes I, Pereira PJP, Harms S, Oliveira AM, Schneider PM, Brehm A. Genetic characterization of Guinea-Bissau using a 12 X-chromosomal STR system: Inferences from a multiethnic population. Forensic Sci Int Genet 2017; 31:89-94. [PMID: 28858674 DOI: 10.1016/j.fsigen.2017.08.016] [Citation(s) in RCA: 7] [Impact Index Per Article: 0.9] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 11/04/2016] [Revised: 08/14/2017] [Accepted: 08/17/2017] [Indexed: 10/19/2022]
Abstract
A male West African sample from Guinea-Bissau (West-African coast) was genetically analyzed using 12 X chromosomal short tandem repeats that are grouped into four haplotype groups. Linkage disequilibrium was tested (p≤0.0008) and association was detected for the majority of markers in three out of the four studied haplotype clusters. The sample of 332 unrelated individuals analyzed in this study belonged to several recognized ethnic groups (n=18) which were used to evaluate the genetic variation of Guinea-Bissau's population. Pairwise genetic distances (FST) did not reveal significant differences among the majority of groups. An additional 110 samples from other countries also belonging to West Africa were as well compared with the sample of Guinea-Bissau. No significant differences were found between these two groups of West African individuals, supporting the genetic homogeneity of this region on the X chromosome level. The generation of over 100 DNA West African sequences provided new insights into the repeat sequence structure of some of the present X-STRs. Parameters for forensic evaluation were also calculated for each X-STR, supporting the potential application of these markers in typical kinship scenarios. Also, the high power of discrimination values for samples of female and male origin observed in this study, confirms the usefulness of the present X-STRs in identification analysis.
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Affiliation(s)
- Iva Gomes
- Institute of Legal Medicine, Faculty of Medicine, University of Cologne, Cologne, Germany
| | - Plácido J P Pereira
- Human Genetics Laboratory, University of Madeira, Campus of Penteada, 9020-105 Funchal, Portugal
| | - Sonja Harms
- Institute of Legal Medicine, Faculty of Medicine, University of Cologne, Cologne, Germany
| | - Andréa M Oliveira
- Genetic Department, Institute of Biology, State University of Rio de Janeiro (UERJ), Brazil
| | - Peter M Schneider
- Institute of Legal Medicine, Faculty of Medicine, University of Cologne, Cologne, Germany
| | - António Brehm
- Human Genetics Laboratory, University of Madeira, Campus of Penteada, 9020-105 Funchal, Portugal.
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25
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Lee JCI, Lin CY, Tsai LC, Yu YJ, Liao KH, Linacre A, Hsieh HM. Establishment of 11 linked X-STR loci within 1.1 Mb to assist with kinship testing. Int J Legal Med 2017; 132:967-973. [PMID: 28730502 DOI: 10.1007/s00414-017-1637-z] [Citation(s) in RCA: 3] [Impact Index Per Article: 0.4] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 03/09/2017] [Accepted: 07/04/2017] [Indexed: 11/29/2022]
Abstract
This report identifies and characterizes 10 novel short tandem repeat (STR) loci on the human X chromosome, all of which are within a range of 1.1 Mb. These newly characterized loci were developed to aid in kinship assignment when the X chromosome is specifically required. The repeat DNA sequences were identified initially using data in GenBank and are located immediately upstream and downstream from the previously described locus DXS6807. Only those loci with seven or more observed alleles were used for further study resulting in the identification of 10 new loci. The distance between each pair of loci ranged from 24,998 to 244,701 bp with an average of approximately 110.8 kb. The number of observed alleles ranged from 7 to 30 for these 10 loci with a polymorphic information content ranging from 0.593 to 0.930. The LOD score from a pairwise linkage study ranged from 4.40 to 23.73, indicating that these 11 loci were highly linked, as expected. In line with standard forensic practice, all 11 loci can be amplified in one multiplex reaction, and comprehensive allelic ladders for all the loci have been constructed. These newly established 11 linked STR loci on the human X chromosome were found to be highly polymorphic and have the potential to aid in kinship testing where the X chromosome loci currently plays a role.
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Affiliation(s)
- James Chun-I Lee
- Department of Forensic Medicine, College of Medicine, National Taiwan University, No. 1 Jen-Ai Road Section 1, Taipei, 10051, Taiwan
| | - Chun-Yen Lin
- Institute of Forensic Medicine, Ministry of Justice, No. 123 Min'an Street., Zhonghe Dist, New Taipei City, 23552, Taiwan
| | - Li-Chin Tsai
- Department of Forensic Science, Central Police University, 56 Shu-Jen Road, Kwei-San, Taoyuan, 33304, Taiwan
| | - Yu-Jen Yu
- Department of Forensic Medicine, College of Medicine, National Taiwan University, No. 1 Jen-Ai Road Section 1, Taipei, 10051, Taiwan
| | - Keng-Hsien Liao
- Department of Forensic Medicine, College of Medicine, National Taiwan University, No. 1 Jen-Ai Road Section 1, Taipei, 10051, Taiwan
| | - Adrian Linacre
- School of Biological Sciences, Flinders University, Adelaide, 5001, Australia
| | - Hsing-Mei Hsieh
- Department of Forensic Science, Central Police University, 56 Shu-Jen Road, Kwei-San, Taoyuan, 33304, Taiwan.
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26
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Guo YX, Chen JG, Wang Y, Yan JW, Chen J, Yao TH, Zhang LP, Yang G, Meng HT, Zhang YD, Mei T, Liu YS, Dong Q, Zhu BF. Genetic polymorphism analyses of a novel panel of 19 X-STR loci in the Chinese Uygur ethnic minority. J Zhejiang Univ Sci B 2017; 17:367-74. [PMID: 27143264 DOI: 10.1631/jzus.b1500228] [Citation(s) in RCA: 12] [Impact Index Per Article: 1.5] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 01/10/2023]
Abstract
The population genetic data and forensic parameters of 19 X-chromosome short tandem repeat (X-STR) loci in Chinese Uygur ethnic minority are presented. These loci were detected in a sample of 233 (94 males and 139 females) unrelated healthy individuals. We observed 238 alleles at the 19 X-STR loci, with the corresponding gene frequencies spanning the range from 0.0021 to 0.5644. After Bonferroni correction (P>0.0026), there were no significant deviations from Hardy-Weinberg equilibrium. The cumulative power of discrimination in females and males, and the probability of exclusion of the 19 X-STR loci were 0.999 999 999 999 999 999 998 091, 0.999 999 999 999 966, and 0.999 999 986 35, respectively. The cumulative mean exclusion chance was 0.999 999 992 849 in deficiency cases, 0.999 999 999 999 628 in normal trios, and 0.999 999 998 722 in duo cases. The high value of the forensic parameters mentioned above revealed that the novel panel of 19 loci had important values for forensic applications in the Uygur group.
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Affiliation(s)
- Yu-Xin Guo
- Key Laboratory of Shaanxi Province for Craniofacial Precision Medicine Research, College of Stomatology, Xi'an Jiaotong University, Xi'an 710004, China.,Clinical Research Center of Shaanxi Province for Dental and Maxillofacial Diseases, College of Stomatology, Xi'an Jiaotong University, Xi'an 710004, China.,Research Center of Stomatology, Stomatological Hospital, Xi'an Jiaotong University, Xi'an 710004, China
| | - Jian-Gang Chen
- Department of Biochemistry, Preclinical Medicine College, Xinjiang Medical University, Urumqi 830011, China
| | - Yan Wang
- Criminal Police Detachment of Yili Public Security Bureau, Yili 835000, China
| | - Jiang-Wei Yan
- Key Laboratory of Genome Sciences, Beijing Institute of Genomics, Chinese Academy of Sciences, Beijing 100101, China
| | - Jing Chen
- Key Laboratory of Genome Sciences, Beijing Institute of Genomics, Chinese Academy of Sciences, Beijing 100101, China
| | - Tian-Hua Yao
- Department of General Dentistry, Stomatological Hospital, Xi'an Jiaotong University, Xi'an 710004, China
| | - Li-Ping Zhang
- Department of Biochemistry, Preclinical Medicine College, Xinjiang Medical University, Urumqi 830011, China
| | - Guang Yang
- Department of Pathology and Laboratory Medicine, Loma Linda University Medical Center, California 92354, USA
| | - Hao-Tian Meng
- Key Laboratory of Shaanxi Province for Craniofacial Precision Medicine Research, College of Stomatology, Xi'an Jiaotong University, Xi'an 710004, China.,Clinical Research Center of Shaanxi Province for Dental and Maxillofacial Diseases, College of Stomatology, Xi'an Jiaotong University, Xi'an 710004, China.,Research Center of Stomatology, Stomatological Hospital, Xi'an Jiaotong University, Xi'an 710004, China
| | - Yu-Dang Zhang
- Key Laboratory of Shaanxi Province for Craniofacial Precision Medicine Research, College of Stomatology, Xi'an Jiaotong University, Xi'an 710004, China.,Clinical Research Center of Shaanxi Province for Dental and Maxillofacial Diseases, College of Stomatology, Xi'an Jiaotong University, Xi'an 710004, China.,Research Center of Stomatology, Stomatological Hospital, Xi'an Jiaotong University, Xi'an 710004, China
| | - Ting Mei
- Department of Biochemistry, Preclinical Medicine College, Xinjiang Medical University, Urumqi 830011, China
| | - Yao-Shun Liu
- Department of Biochemistry, Preclinical Medicine College, Xinjiang Medical University, Urumqi 830011, China
| | - Qian Dong
- Key Laboratory of Shaanxi Province for Craniofacial Precision Medicine Research, College of Stomatology, Xi'an Jiaotong University, Xi'an 710004, China.,Clinical Research Center of Shaanxi Province for Dental and Maxillofacial Diseases, College of Stomatology, Xi'an Jiaotong University, Xi'an 710004, China.,Research Center of Stomatology, Stomatological Hospital, Xi'an Jiaotong University, Xi'an 710004, China
| | - Bo-Feng Zhu
- Key Laboratory of Shaanxi Province for Craniofacial Precision Medicine Research, College of Stomatology, Xi'an Jiaotong University, Xi'an 710004, China.,Clinical Research Center of Shaanxi Province for Dental and Maxillofacial Diseases, College of Stomatology, Xi'an Jiaotong University, Xi'an 710004, China.,Research Center of Stomatology, Stomatological Hospital, Xi'an Jiaotong University, Xi'an 710004, China
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27
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Curiosities of X chromosomal markers and haplotypes. Int J Legal Med 2017; 132:361-371. [DOI: 10.1007/s00414-017-1612-8] [Citation(s) in RCA: 6] [Impact Index Per Article: 0.8] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 03/15/2017] [Accepted: 05/16/2017] [Indexed: 10/19/2022]
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28
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DNA Commission of the International Society for Forensic Genetics (ISFG): Guidelines on the use of X-STRs in kinship analysis. Forensic Sci Int Genet 2017; 29:269-275. [PMID: 28544956 DOI: 10.1016/j.fsigen.2017.05.005] [Citation(s) in RCA: 60] [Impact Index Per Article: 7.5] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 05/11/2017] [Accepted: 05/12/2017] [Indexed: 01/21/2023]
Abstract
Forensic genetic laboratories perform an increasing amount of genetic analyses of the X chromosome, in particular to solve complex cases of kinship analysis. For some biological relationships X-chromosomal markers can be more informative than autosomal markers, and there are a large number of markers, methods and databases that have been described for forensic use. Due to their particular mode of inheritance, and their physical location on a single chromosome, some specific considerations are required when estimating the weight of evidence for X-chromosomal marker DNA data. The DNA Commission of the International Society for Forensic Genetics (ISFG) hereby presents guidelines and recommendations for the use of X-chromosomal markers in kinship analysis with a special focus on the biostatistical evaluation. Linkage and linkage disequilibrium (association of alleles) are of special importance for such evaluations and these concepts and the implications for likelihood calculations are described in more detail. Furthermore it is important to use appropriate computer software that accounts for linkage and linkage disequilibrium among loci, as well as for mutations. Even though some software exist, there is still a need for further improvement of dedicated software.
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Meng HT, Shen CM, Zhang YD, Dong Q, Guo YX, Yang G, Yan JW, Liu YS, Mei T, Shi JF, Zhu BF. Chinese Xibe population genetic composition according to linkage groups of X-chromosomal STRs: population genetic variability and interpopulation comparisons. Ann Hum Biol 2017; 44:546-553. [PMID: 28412872 DOI: 10.1080/03014460.2017.1318951] [Citation(s) in RCA: 10] [Impact Index Per Article: 1.3] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 01/25/2023]
Abstract
BACKGROUND The Xibe population is one of China's officially recognised populations and is now distributed separately from west to east in the northern part of China. X-chromosomal short tandem repeats have a special inheritance pattern, and could be used as complements in forensic application, especially for complex or deficiency cases. SUBJECTS AND METHODS This study obtained the allelic and haplotypic frequencies of 19 X-STR loci in the Xibe population from Xinjiang Uygur Autonomous Region, China, and studied the genetic differentiations between the Xibe and other populations. RESULTS The combined power of discrimination in females and males and mean exclusion chances in deficiency cases, normal trios and duo cases was at least 0.999 999 994. In the haplotypic study, the Xibe population showed a more similar pattern of haplotype distribution with Asian populations than populations from other continents, while allelic study also indicated a closer relationship between the Xibe and Asian populations. CONCLUSIONS The 19 X-STR loci would be useful in forensic application in the studied population. The Xibe population showed a closer genetic relationship with Asian populations in the study, and more population data would be necessary for more detailed genetic relationship studies.
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Affiliation(s)
- Hao-Tian Meng
- a Key Laboratory of Shaanxi Province for Craniofacial Precision Medicine Research, College of Stomatology , Xi'an Jiaotong University , Xi'an , PR China.,b Clinical Research Center of Shaanxi Province for Dental and Maxillofacial Diseases, College of Stomatology , Xi'an Jiaotong University , Xi'an , PR China.,c Department of Forensic Genetics, School of Forensic Medicine , Southern Medical University , Guangzhou , PR China
| | - Chun-Mei Shen
- d Blood Center of Shaanxi Province , Xi'an , PR China.,e Institute of Brain and Behavioral Sciences, College of Life Sciences , Shaanxi Normal University , Xi'an , PR China
| | - Yu-Dang Zhang
- a Key Laboratory of Shaanxi Province for Craniofacial Precision Medicine Research, College of Stomatology , Xi'an Jiaotong University , Xi'an , PR China.,b Clinical Research Center of Shaanxi Province for Dental and Maxillofacial Diseases, College of Stomatology , Xi'an Jiaotong University , Xi'an , PR China.,f Institute of Forensic Sciences of Anhui Public Security Department , Hefei , PR China
| | - Qian Dong
- a Key Laboratory of Shaanxi Province for Craniofacial Precision Medicine Research, College of Stomatology , Xi'an Jiaotong University , Xi'an , PR China.,b Clinical Research Center of Shaanxi Province for Dental and Maxillofacial Diseases, College of Stomatology , Xi'an Jiaotong University , Xi'an , PR China
| | - Yu-Xin Guo
- a Key Laboratory of Shaanxi Province for Craniofacial Precision Medicine Research, College of Stomatology , Xi'an Jiaotong University , Xi'an , PR China.,b Clinical Research Center of Shaanxi Province for Dental and Maxillofacial Diseases, College of Stomatology , Xi'an Jiaotong University , Xi'an , PR China
| | - Guang Yang
- g Department of Pathology , Laboratory of Medicine, Loma Linda University Medical Center , Loma Linda , CA , USA
| | - Jiang-Wei Yan
- h Key Laboratory of Genome Sciences , Beijing Institute of Genomics, Chinese Academy of Sciences , Beijing , PR China
| | - Yao-Shun Liu
- i Department of Biochemistry , Preclinical Medicine College, Xinjiang Medical University , Urumqi , PR China
| | - Ting Mei
- i Department of Biochemistry , Preclinical Medicine College, Xinjiang Medical University , Urumqi , PR China
| | - Jian-Feng Shi
- a Key Laboratory of Shaanxi Province for Craniofacial Precision Medicine Research, College of Stomatology , Xi'an Jiaotong University , Xi'an , PR China.,b Clinical Research Center of Shaanxi Province for Dental and Maxillofacial Diseases, College of Stomatology , Xi'an Jiaotong University , Xi'an , PR China
| | - Bo-Feng Zhu
- a Key Laboratory of Shaanxi Province for Craniofacial Precision Medicine Research, College of Stomatology , Xi'an Jiaotong University , Xi'an , PR China.,b Clinical Research Center of Shaanxi Province for Dental and Maxillofacial Diseases, College of Stomatology , Xi'an Jiaotong University , Xi'an , PR China.,c Department of Forensic Genetics, School of Forensic Medicine , Southern Medical University , Guangzhou , PR China
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30
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Yang X, Zhang X, Zhu J, Chen L, Liu C, Feng X, Chen L, Wang H, Liu C. Genetic analysis of 19 X chromosome STR loci for forensic purposes in four Chinese ethnic groups. Sci Rep 2017; 7:42782. [PMID: 28211539 PMCID: PMC5314363 DOI: 10.1038/srep42782] [Citation(s) in RCA: 19] [Impact Index Per Article: 2.4] [Reference Citation Analysis] [Abstract] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 05/12/2016] [Accepted: 01/16/2017] [Indexed: 12/13/2022] Open
Abstract
A new 19 X- short tandem repeat (STR) multiplex PCR system has recently been developed, though its applicability in forensic studies has not been thoroughly assessed. In this study, 932 unrelated individuals from four Chinese ethnic groups (Han, Tibet, Uighur and Hui) were successfully genotyped using this new multiplex PCR system. Our results showed significant linkage disequilibrium between markers DXS10103 and DXS10101 in all four ethnic groups; markers DXS10159 and DXS10162, DXS6809 and DXS6789, and HPRTB and DXS10101 in Tibetan populations; and markers DXS10074 and DXS10075 in Uighur populations. The combined powers of discrimination in males and females were calculated according to haplotype frequencies from allele distributions rather than haplotype counts in the relevant population and were high in four ethnic groups. The cumulative powers of discrimination of the tested X-STR loci were 1.000000000000000 and 0.999999999997940 in females and males, respectively. All 19 X-STR loci are highly polymorphic. The highest Reynolds genetic distances were observed for the Tibet-Uighur pairwise comparisons. This study represents an extensive report on X-STR marker variation in minor Chinese populations and a comprehensive analysis of the diversity of these 19 X STR markers in four Chinese ethnic groups.
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Affiliation(s)
- Xingyi Yang
- Department of Forensic Medicine, School of Basic Medical Sciences, Southern Medical University, Guangzhou, Guangdong Province 510515, P.R. China.,Guangzhou Forensic Science Institute, Guangdong Province Key Laboratory of Forensic Genetics, Guangzhou 510030, P.R. China
| | - Xiaofang Zhang
- Department of Forensic Medicine, School of Basic Medical Sciences, Southern Medical University, Guangzhou, Guangdong Province 510515, P.R. China.,Guangzhou Forensic Science Institute, Guangdong Province Key Laboratory of Forensic Genetics, Guangzhou 510030, P.R. China
| | - Junyong Zhu
- Guangzhou Forensic Science Institute, Guangdong Province Key Laboratory of Forensic Genetics, Guangzhou 510030, P.R. China
| | - Linli Chen
- AGCU ScienTech Incorporation, Wuxi 214174, P.R. China
| | - Changhui Liu
- Guangzhou Forensic Science Institute, Guangdong Province Key Laboratory of Forensic Genetics, Guangzhou 510030, P.R. China
| | - Xingling Feng
- Department of Forensic Medicine, School of Basic Medical Sciences, Southern Medical University, Guangzhou, Guangdong Province 510515, P.R. China.,Guangzhou Forensic Science Institute, Guangdong Province Key Laboratory of Forensic Genetics, Guangzhou 510030, P.R. China
| | - Ling Chen
- Department of Forensic Medicine, School of Basic Medical Sciences, Southern Medical University, Guangzhou, Guangdong Province 510515, P.R. China
| | - Huijun Wang
- Department of Forensic Medicine, School of Basic Medical Sciences, Southern Medical University, Guangzhou, Guangdong Province 510515, P.R. China
| | - Chao Liu
- Department of Forensic Medicine, School of Basic Medical Sciences, Southern Medical University, Guangzhou, Guangdong Province 510515, P.R. China.,Guangzhou Forensic Science Institute, Guangdong Province Key Laboratory of Forensic Genetics, Guangzhou 510030, P.R. China
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31
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Mršić G, Ozretić P, Crnjac J, Merkaš S, Račić I, Rožić S, Sukser V, Popović M, Korolija M. Analysis of 12 X-STR loci in the population of south Croatia. Mol Biol Rep 2017; 44:183-189. [PMID: 28070706 DOI: 10.1007/s11033-017-4096-1] [Citation(s) in RCA: 5] [Impact Index Per Article: 0.6] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 03/03/2016] [Accepted: 01/02/2017] [Indexed: 02/08/2023]
Abstract
The aim of the study was to assess forensic pertinence of 12 short tandem repeats (STRs) on X-chromosome in south Croatia population. Investigator® Argus X-12 kit was used to co-amplify 12 STR loci belonging to four linkage groups (LGs) on X-chromosome in 99 male and 98 female DNA samples of unrelated donors. PCR products were analyzed by capillary electrophoresis. Population genetic and forensic parameters were calculated by the Arlequin and POPTREE2 software, and an on-line tool available at ChrX-STR.org. Hardy-Weinberg equilibrium was confirmed for all X-STR markers in female samples. Biallelic patterns at DXS10079 locus were detected in four male samples. Polymorphism information content for the most (DXS10135) and the least (DXS8378) informative markers was 0.9212 and 0.6347, respectively. In both male and female samples, combined power of discrimination exceeded 0.999999999. As confirmed by linkage disequilibrium test, significant association of marker pair DXS10074-DXS10079 (P = 0.0004) within LG2 and marker pair DXS10101-DXS10103 (P = 0.0003) within LG3 was found only in male samples. Number of observed haplotypes in our sample pool amounted 3.01, 7.53, 5 and 3.25% of the number of possible haplotypes for LG1, LG2, LG3 and LG4, respectively. According to haplotype diversity value of 0.9981, LG1 was the most informative. In comparison of south Croatia with 26 world populations, pair-wise [Formula: see text] values increase in parallel with geographical distance. Overall statistical assessment confirmed suitability of Investigator® Argus X-12 kit for forensic casework in both identification and familial testing in the population of south Croatia.
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Affiliation(s)
- Gordan Mršić
- Forensic Science Centre "Ivan Vučetić", Zagreb, Croatia
- Forensic Science Office, University of Zagreb, Zagreb, Croatia
| | | | - Josip Crnjac
- University Department for Forensic Sciences, University of Split, Split, Croatia
| | - Siniša Merkaš
- Forensic Science Centre "Ivan Vučetić", Zagreb, Croatia
- Forensic Science Office, University of Zagreb, Zagreb, Croatia
| | - Ivana Račić
- Forensic Science Centre "Ivan Vučetić", Zagreb, Croatia
- Forensic Science Office, University of Zagreb, Zagreb, Croatia
| | - Sara Rožić
- Forensic Science Centre "Ivan Vučetić", Zagreb, Croatia
- Forensic Science Office, University of Zagreb, Zagreb, Croatia
| | - Viktorija Sukser
- Forensic Science Centre "Ivan Vučetić", Zagreb, Croatia
- Forensic Science Office, University of Zagreb, Zagreb, Croatia
| | - Maja Popović
- Faculty of Veterinary Medicine, University of Zagreb, Zagreb, Croatia
| | - Marina Korolija
- Forensic Science Centre "Ivan Vučetić", Zagreb, Croatia.
- Forensic Science Office, University of Zagreb, Zagreb, Croatia.
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32
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Crnjac J, Ozretić P, Merkaš S, Ratko M, Lozančić M, Korolija M, Popović M, Mršić G. Investigator Argus X-12 study on the population of northern Croatia. Genet Mol Biol 2017; 40:80-83. [PMID: 27768154 PMCID: PMC5409765 DOI: 10.1590/1678-4685-gmb-2015-0261] [Citation(s) in RCA: 2] [Impact Index Per Article: 0.3] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Download PDF] [Journal Information] [Subscribe] [Scholar Register] [Received: 10/12/2015] [Accepted: 02/03/2016] [Indexed: 02/08/2023] Open
Abstract
X chromosome STR typing has emerged recently as a powerful tool, complementary to autosomal STR typing, in solving complex forensic and missing person cases. Investigator® Argus X-12 is a commercial product that allows co-amplification of 12 X chromosomal markers belonging to four linkage groups (LGs). In this study, we analyzed by capillary electrophoresis blood samples from 100 females and 102 males from a population of northern Croatia. Statistical analysis included calculation of allele and haplotype frequencies, as well as forensic parameters. The most informative marker for the northern Croatia population was DXS10135 with PIC=0.9211 and a total of 27 alleles. The least polymorphic marker was DXS8378 with 6 alleles. The proportion of observed haplotypes from the number of possible haplotypes varied from 2.74-8.57% across all LGs, with LG1 being the most informative. Of the 11 tested world populations compared to the population of northern Croatia, significant differences in genetic distance (FST) were found for Greenlandic and all non-European populations. We found that all tested markers are in HWE and can thus be used for match probability calculation. Because of high combined power of discrimination in both men and women, Investigator® Argus X-12 is applicable for the northern Croatia population in routine forensic casework.
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Affiliation(s)
- Josip Crnjac
- University Department for Forensic Sciences, University of Split, Split, Croatia
| | | | - Siniša Merkaš
- Forensic Science Centre "Ivan Vučetić", Zagreb, Croatia
| | - Martina Ratko
- Forensic Science Centre "Ivan Vučetić", Zagreb, Croatia
| | | | | | - Maja Popović
- Faculty of Veterinary Medicine, University of Zagreb, Zagreb, Croatia
| | - Gordan Mršić
- Forensic Science Centre "Ivan Vučetić", Zagreb, Croatia
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33
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Guo F. Population genetic data for 12 X-STR loci in the Northern Han Chinese and StatsX package as tools for population statistics on X-STR. Forensic Sci Int Genet 2017; 26:e1-e8. [DOI: 10.1016/j.fsigen.2016.10.012] [Citation(s) in RCA: 16] [Impact Index Per Article: 2.0] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 08/02/2016] [Revised: 10/03/2016] [Accepted: 10/23/2016] [Indexed: 12/29/2022]
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34
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Liu YS, Meng HT, Mei T, Zhang LP, Chen JG, Zhang YD, Chen J, Guo YX, Dong Q, Yan JW, Zhu BF. Genetic diversity and haplotypic structure of Chinese Kazak ethnic group revealed by 19 STRs on the X chromosome. Gene 2016; 600:64-69. [PMID: 27840163 DOI: 10.1016/j.gene.2016.11.018] [Citation(s) in RCA: 22] [Impact Index Per Article: 2.4] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 06/16/2016] [Revised: 10/31/2016] [Accepted: 11/08/2016] [Indexed: 01/10/2023]
Abstract
X-chromosomal short tandem repeats (X-STRs) have been widely used in forensic practices involving complicated ties of kinship over the past years, and also play an increasingly important role in population genetics. To study the genetic polymorphisms of 19 STR loci on X chromosome in Chinese Kazak ethnic group, we investigated the allelic and haplotypic frequencies of the 19 loci in 300 (149 males and 151 females) unrelated healthy individuals from Ili Kazak Autonomous Prefecture, Xinjiang Uigur Autonomous Region of China after having evaluated the forensic application value of these loci in forensic sciences, and then compared the population distinctions between the Kazak group and other reference groups. We observed a total of 240 alleles at these X-STR loci with the corresponding allelic frequencies ranging from 0.0017 to 0.5917. In the study, the highest polymorphism was found at DXS10135 locus. The combined power of discrimination in females was 0.999999999999999999999985 and in males 0.999999999999968. The present study indicates that the 19 X-STR loci are very useful for both forensic identification cases and kinship analyses involving a female offspring.
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Affiliation(s)
- Yao-Shun Liu
- Department of Forensic Genetics, School of Forensic Medicine, Southern Medical University, Guangzhou, Guangdong 510515, PR China; Key Laboratory of Shaanxi Province for Craniofacial Precision Medicine Research, College of Stomatology, Xi'an Jiaotong University, Xi'an, Shaanxi 710004, PR China; Department of Biochemistry, Preclinical Medicine College, Xinjiang Medical University, Urumqi 830011, PR China
| | - Hao-Tian Meng
- Key Laboratory of Shaanxi Province for Craniofacial Precision Medicine Research, College of Stomatology, Xi'an Jiaotong University, Xi'an, Shaanxi 710004, PR China
| | - Ting Mei
- Department of Biochemistry, Preclinical Medicine College, Xinjiang Medical University, Urumqi 830011, PR China
| | - Li-Ping Zhang
- Department of Biochemistry, Preclinical Medicine College, Xinjiang Medical University, Urumqi 830011, PR China
| | - Jian-Gang Chen
- Department of Biochemistry, Preclinical Medicine College, Xinjiang Medical University, Urumqi 830011, PR China
| | - Yu-Dang Zhang
- Anhui Public Security Bureau Evidence Identification Center, Anhui 518054, PR China
| | - Jing Chen
- Beijing Institute of Genomics, Chinese Academy of Sciences, Beijing 100101, PR China
| | - Yu-Xin Guo
- Key Laboratory of Shaanxi Province for Craniofacial Precision Medicine Research, College of Stomatology, Xi'an Jiaotong University, Xi'an, Shaanxi 710004, PR China
| | - Qian Dong
- Key Laboratory of Shaanxi Province for Craniofacial Precision Medicine Research, College of Stomatology, Xi'an Jiaotong University, Xi'an, Shaanxi 710004, PR China
| | - Jiang-Wei Yan
- Beijing Institute of Genomics, Chinese Academy of Sciences, Beijing 100101, PR China
| | - Bo-Feng Zhu
- Department of Forensic Genetics, School of Forensic Medicine, Southern Medical University, Guangzhou, Guangdong 510515, PR China.
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35
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Diegoli TM, Rohde H, Borowski S, Krawczak M, Coble MD, Nothnagel M. Genetic mapping of 15 human X chromosomal forensic short tandem repeat (STR) loci by means of multi-core parallelization. Forensic Sci Int Genet 2016; 25:39-44. [PMID: 27497644 DOI: 10.1016/j.fsigen.2016.07.004] [Citation(s) in RCA: 13] [Impact Index Per Article: 1.4] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 01/20/2016] [Revised: 05/27/2016] [Accepted: 07/07/2016] [Indexed: 10/21/2022]
Abstract
Typing of X chromosomal short tandem repeat (X STR) markers has become a standard element of human forensic genetic analysis. Joint consideration of many X STR markers at a time increases their discriminatory power but, owing to physical linkage, requires inter-marker recombination rates to be accurately known. We estimated the recombination rates between 15 well established X STR markers using genotype data from 158 families (1041 individuals) and following a previously proposed likelihood-based approach that allows for single-step mutations. To meet the computational requirements of this family-based type of analysis, we modified a previous implementation so as to allow multi-core parallelization on a high-performance computing system. While we obtained recombination rate estimates larger than zero for all but one pair of adjacent markers within the four previously proposed linkage groups, none of the three X STR pairs defining the junctions of these groups yielded a recombination rate estimate of 0.50. Corroborating previous studies, our results therefore argue against a simple model of independent X chromosomal linkage groups. Moreover, the refined recombination fraction estimates obtained in our study will facilitate the appropriate joint consideration of all 15 investigated markers in forensic analysis.
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Affiliation(s)
- Toni Marie Diegoli
- Office of the Chief Scientist, Defense Forensic Science Center, Ft. Gillem, GA, USA; Analytical Services, Inc., Arlington, VA, USA
| | - Heinrich Rohde
- Cologne Center for Genomics, University of Cologne, Cologne, Germany
| | - Stefan Borowski
- Regional Computing Centre, University of Cologne, Cologne, Germany
| | - Michael Krawczak
- Institute of Medical Informatics and Statistics, Christian-Albrechts University, Kiel, Germany
| | - Michael D Coble
- Applied Genetics Group, National Institute of Standards and Technology, Gaithersburg, MD, USA
| | - Michael Nothnagel
- Cologne Center for Genomics, University of Cologne, Cologne, Germany.
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36
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Crnjac J, Ozretić P, Merkaš S, Ratko M, Lozančić M, Rožić S, Špoljarić D, Korolija M, Popović M, Mršić G. Analysis of 12 X-chromosomal markers in the population of central Croatia. Leg Med (Tokyo) 2016; 21:77-84. [PMID: 27497338 DOI: 10.1016/j.legalmed.2016.07.001] [Citation(s) in RCA: 7] [Impact Index Per Article: 0.8] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 01/27/2016] [Revised: 05/12/2016] [Accepted: 07/01/2016] [Indexed: 02/05/2023]
Abstract
Investigator® Argus X-12 Kit is a commercially available set that allows simultaneous PCR amplification of 12 X-STR markers belonging to four linkage groups (LG). To assess the forensic efficiency of these markers for the population of central Croatia and consequent applicability in routine forensic casework, DNA from 200 blood samples of unrelated donors (100 female and 100 male) was amplified by Investigator® Argus X-12 Kit and analyzed by capillary electrophoresis. Statistical computations based on allele and haplotype frequencies for LG1 - LG4 were performed using Arlequin 3.5 software and on-line tool available at ChrX-STR.org. In female samples, all X-STR markers were in Hardy-Weinberg equilibrium (HWE). The most informative marker for central Croatia population was DXS10135 with polymorphism information content (PIC) 0.9296. The least polymorphic locus was DXS8378 (PIC=0.6363). Power of discrimination (PD) varied from 0.6968 to 0.9336 in male and from 0.8476 to 0.9916 in female samples. Combined PD exceeded 0.999999999 in both men and women. In male samples, linkage disequilibrium (LD) test revealed significant association (P=0.0000) of one marker pair in LG4 and two marker pairs in LG3. Portion of observed haplotypes in the number of possible haplotypes varied from 2.86% to 7.47% across all LGs. LG1 was the most informative with haplotype diversity (H) 0.9972. High PD of all analyzed markers exhibited for central Croatia population confirms suitability of Investigator® Argus X-12 for forensic pertinence. Moreover, results of this study will be included in establishing a national reference X-STR database based on 12 X-STR loci, which is necessary for the correct interpretation of the forensic casework results.
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Affiliation(s)
- Josip Crnjac
- University Department for Forensic Sciences, University of Split, Split, Croatia
| | | | - Siniša Merkaš
- Forensic Science Centre "Ivan Vučetić", Zagreb, Croatia; Forensic Science Office, University of Zagreb, Zagreb, Croatia
| | - Martina Ratko
- Forensic Science Centre "Ivan Vučetić", Zagreb, Croatia
| | | | - Sara Rožić
- Forensic Science Centre "Ivan Vučetić", Zagreb, Croatia; Forensic Science Office, University of Zagreb, Zagreb, Croatia
| | - Daniel Špoljarić
- Faculty of Veterinary Medicine, University of Zagreb, Zagreb, Croatia
| | - Marina Korolija
- Forensic Science Centre "Ivan Vučetić", Zagreb, Croatia; Forensic Science Office, University of Zagreb, Zagreb, Croatia
| | - Maja Popović
- Faculty of Veterinary Medicine, University of Zagreb, Zagreb, Croatia
| | - Gordan Mršić
- Forensic Science Centre "Ivan Vučetić", Zagreb, Croatia; Forensic Science Office, University of Zagreb, Zagreb, Croatia.
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37
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Beurteilung von fraglichen Geschwister- bzw. Halbgeschwisterfällen. Rechtsmedizin (Berl) 2016. [DOI: 10.1007/s00194-016-0093-2] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 10/21/2022]
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38
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Zhang YD, Shen CM, Meng HT, Guo YX, Dong Q, Yang G, Yan JW, Liu YS, Mei T, Huang RZ, Zhu BF. Allele and haplotype diversity of new multiplex of 19 ChrX-STR loci in Han population from Guanzhong region (China). Electrophoresis 2016; 37:1669-75. [PMID: 27063464 DOI: 10.1002/elps.201500425] [Citation(s) in RCA: 20] [Impact Index Per Article: 2.2] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 08/16/2015] [Revised: 02/29/2016] [Accepted: 03/30/2016] [Indexed: 12/12/2022]
Abstract
X-chromosomal short tandem repeats (X-STRs) have been proved to be useful for some deficiency paternity cases in recent years. Here, we studied the genetic polymorphisms of 19 X-STR loci (DXS10148-DXS10135-DXS8378, DXS10159-DXS10162-DXS10164, DXS7132-DXS10079-DXS10074-DXS10075, DXS6809-DXS6789, DXS7424-DXS101, DXS10103-HPRTB-DXS10101 and DXS7423-DXS10134) in 252 male and 222 female individuals from Guanzhong Han population, China. No deviation for all 19 loci was observed from the Hardy-Weinberg equilibrium. The polymorphism information content values of the panel of 19 loci were more than 0.5 with the exception of the locus DXS7423. The combined power of discrimination were 0.9999999999999999999994340 in females and 0.9999999999997662 in males, respectively; and the combined mean exclusion chances were 0.999999993764 in duos and 0.999999999997444 in trios, respectively. The haplotype diversities for all the seven clusters of linked loci were more than 0.9. The results showed that the panel of 19 X-STR loci were powerful for forensic applications in Guanzhong Han population. Locus by locus population comparisons showed significant differences at more than seven loci between Guanzhong Han population and the groups from North America, Europe and Africa.
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Affiliation(s)
- Yu-Dang Zhang
- Key Laboratory of Shaanxi Province for Craniofacial Precision Medicine Research, College of Stomatology, Xi'an Jiaotong University, Xi'an, P. R. China.,Clinical Research Center of Shaanxi Province for Dental and Maxillofacial Diseases, College of Stomatology, Xi'an Jiaotong University, Xi'an, P. R. China.,Research Center of Stomatology, Stomatological Hospital, Xi'an Jiaotong University, Xi'an, P. R. China.,Xi'an Jiaotong University Health Science Center, Xi'an, P. R. China
| | - Chun-Mei Shen
- Blood Center of Shaanxi Province, Xi'an, P. R. China.,College of Life Sciences, Shaanxi Normal University, Xi'an, P. R. China
| | - Hao-Tian Meng
- Key Laboratory of Shaanxi Province for Craniofacial Precision Medicine Research, College of Stomatology, Xi'an Jiaotong University, Xi'an, P. R. China.,Clinical Research Center of Shaanxi Province for Dental and Maxillofacial Diseases, College of Stomatology, Xi'an Jiaotong University, Xi'an, P. R. China.,Research Center of Stomatology, Stomatological Hospital, Xi'an Jiaotong University, Xi'an, P. R. China.,Xi'an Jiaotong University Health Science Center, Xi'an, P. R. China
| | - Yu-Xin Guo
- Key Laboratory of Shaanxi Province for Craniofacial Precision Medicine Research, College of Stomatology, Xi'an Jiaotong University, Xi'an, P. R. China.,Clinical Research Center of Shaanxi Province for Dental and Maxillofacial Diseases, College of Stomatology, Xi'an Jiaotong University, Xi'an, P. R. China.,Research Center of Stomatology, Stomatological Hospital, Xi'an Jiaotong University, Xi'an, P. R. China.,Xi'an Jiaotong University Health Science Center, Xi'an, P. R. China
| | - Qian Dong
- Key Laboratory of Shaanxi Province for Craniofacial Precision Medicine Research, College of Stomatology, Xi'an Jiaotong University, Xi'an, P. R. China.,Clinical Research Center of Shaanxi Province for Dental and Maxillofacial Diseases, College of Stomatology, Xi'an Jiaotong University, Xi'an, P. R. China.,Research Center of Stomatology, Stomatological Hospital, Xi'an Jiaotong University, Xi'an, P. R. China.,Xi'an Jiaotong University Health Science Center, Xi'an, P. R. China
| | - Guang Yang
- Department of Pathology and Laboratory Medicine, Loma Linda University Medical Center, Loma Linda, CA, USA
| | - Jiang-Wei Yan
- Key Laboratory of Genome Sciences, Beijing Institute of Genomics, Chinese Academy of Sciences, Beijing, P. R. China
| | - Yao-Shun Liu
- Key Laboratory of Shaanxi Province for Craniofacial Precision Medicine Research, College of Stomatology, Xi'an Jiaotong University, Xi'an, P. R. China.,Clinical Research Center of Shaanxi Province for Dental and Maxillofacial Diseases, College of Stomatology, Xi'an Jiaotong University, Xi'an, P. R. China.,Research Center of Stomatology, Stomatological Hospital, Xi'an Jiaotong University, Xi'an, P. R. China.,Department of Biochemistry, Preclinical Medicine College, Xinjiang Medical University, Urumqi, P. R. China
| | - Ting Mei
- Key Laboratory of Shaanxi Province for Craniofacial Precision Medicine Research, College of Stomatology, Xi'an Jiaotong University, Xi'an, P. R. China.,Clinical Research Center of Shaanxi Province for Dental and Maxillofacial Diseases, College of Stomatology, Xi'an Jiaotong University, Xi'an, P. R. China.,Research Center of Stomatology, Stomatological Hospital, Xi'an Jiaotong University, Xi'an, P. R. China.,Department of Biochemistry, Preclinical Medicine College, Xinjiang Medical University, Urumqi, P. R. China
| | - Rui-Zhe Huang
- Key Laboratory of Shaanxi Province for Craniofacial Precision Medicine Research, College of Stomatology, Xi'an Jiaotong University, Xi'an, P. R. China.,Clinical Research Center of Shaanxi Province for Dental and Maxillofacial Diseases, College of Stomatology, Xi'an Jiaotong University, Xi'an, P. R. China
| | - Bo-Feng Zhu
- Key Laboratory of Shaanxi Province for Craniofacial Precision Medicine Research, College of Stomatology, Xi'an Jiaotong University, Xi'an, P. R. China.,Clinical Research Center of Shaanxi Province for Dental and Maxillofacial Diseases, College of Stomatology, Xi'an Jiaotong University, Xi'an, P. R. China.,Research Center of Stomatology, Stomatological Hospital, Xi'an Jiaotong University, Xi'an, P. R. China
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39
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Poulsen L, Tomas C, Drobnič K, Ivanova V, Mogensen H, Kondili A, Miniati P, Bunokiene D, Jankauskiene J, Pereira V, Morling N. NGMSElect™ and Investigator ® Argus X-12 analysis in population samples from Albania, Iraq, Lithuania, Slovenia, and Turkey. Forensic Sci Int Genet 2016; 22:110-112. [DOI: 10.1016/j.fsigen.2016.02.004] [Citation(s) in RCA: 14] [Impact Index Per Article: 1.6] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 11/20/2015] [Revised: 01/29/2016] [Accepted: 02/09/2016] [Indexed: 11/25/2022]
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40
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Nishi T, Nakamura T, Honda K. Detection of a novel X-chromosomal short tandem repeat marker in Xq28 in four ethnic groups. Leg Med (Tokyo) 2016; 19:43-6. [PMID: 26980253 DOI: 10.1016/j.legalmed.2016.01.010] [Citation(s) in RCA: 3] [Impact Index Per Article: 0.3] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 07/28/2015] [Revised: 12/28/2015] [Accepted: 01/27/2016] [Indexed: 12/17/2022]
Abstract
DNA testing of X-chromosomal short tandem repeat (X-STR) polymorphisms has been the focus of attention in several studies, mainly due to its applicability in the investigation of complex kinship cases. Studies of X-STR in analyses of DNA sequences, population studies and DNA testing applications have been reported. We performed detection and population genetic study of a novel tetranucleotide X-STR locus in the present study. We identified a unique X-STR locus consisting of two tetranucleotides in Xq28. Although the STR is a simple tetranucleotide, its polymorphism was comparatively high [polymorphism information content (PIC)=0.7140] in Japanese subjects. In addition, the STR varied in structure among ethnic groups. We conclude that this locus will be useful for forensic DNA testing and anthropological studies.
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Affiliation(s)
- Takeki Nishi
- Department of Forensic Medicine, The Jikei University School of Medicine, 3-25-8 Nishi-shinbashi, Minato-ku, 105-8461 Tokyo, Japan.
| | - Takako Nakamura
- Department of Legal Medicine, Faculty of Medicine, University of Tsukuba, 1-1-1 Tennodai, Tsukuba, Ibaraki 305-8575, Japan
| | - Katuya Honda
- Department of Legal Medicine, Faculty of Medicine, University of Tsukuba, 1-1-1 Tennodai, Tsukuba, Ibaraki 305-8575, Japan
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41
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Gomes I, Brehm A, Gusmão L, Schneider PM. New sequence variants detected at DXS10148, DXS10074 and DXS10134 loci. Forensic Sci Int Genet 2015; 20:112-116. [PMID: 26590332 DOI: 10.1016/j.fsigen.2015.10.005] [Citation(s) in RCA: 8] [Impact Index Per Article: 0.8] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 06/09/2015] [Revised: 09/29/2015] [Accepted: 10/15/2015] [Indexed: 10/22/2022]
Abstract
A great amount of population and forensic genetic data are available for X-STRs supporting the need for having a common and accurate nomenclature among laboratories allowing for better communication, data exchange, and data comparison. DXS10148, DXS10074 and DXS10134 are commonly used X-STRs particularly due to their inclusion in the commercial kit Investigator Argus X-12 (Qiagen). Samples from West Africa and Iraq were sequenced for all three X-STRs allowing the detection of new DNA sequence variants. At DXS10148, variation was detected at four bases downstream from the flanking region from the repeat motif. The sequence AAGG-AAAG has been detected for the first time as a varying (AAGG-AAAG)1-3 motif, in the present work. One additional string when compared to the common one (AAGG-AAAG)2 adds eight bases to the fragment size of the tetranucleotide STR. This means that 2 repeats are added in these cases to the fragment size of the allele, while the presence of only one copy will reduce the expected allele size by 2 repeats. At DXS10074 two varying stretches consisting of AC and AG dinucleotide repeats were observed in the upstream flanking region, six bases from the main repeat core that also influence the expected allele size. DXS10134 revealed a simpler nomenclature in the Guinea-Bissau sample set when compared to the previously described allele nomenclature. This detected new hidden variation also has impact on the actual allele nomenclature at this locus as it contributes to a new class of short alleles so far undetected in other studies.
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Affiliation(s)
- Iva Gomes
- Institute of Legal Medicine, Faculty of Medicine, University of Cologne, Cologne, Germany.
| | - António Brehm
- Human Genetics Laboratory, University of Madeira, Funchal, Portugal
| | - Leonor Gusmão
- DNA Diagnostic Laboratory (LDD), Institute of Biology, State University of Rio de Janeiro (UERJ), Brazil; IPATIMUP, Institute of Pathology and Molecular Immunology of the University of Porto, Porto, Portugal; Instituto de Investigação e Inovação em Saúde, Universidade do Porto, Porto, Portugal
| | - Peter M Schneider
- Institute of Legal Medicine, Faculty of Medicine, University of Cologne, Cologne, Germany
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42
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Forensic typing of short tandem repeat markers on the X and Y chromosomes. Forensic Sci Int Genet 2015; 18:140-51. [DOI: 10.1016/j.fsigen.2015.03.013] [Citation(s) in RCA: 58] [Impact Index Per Article: 5.8] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 02/23/2015] [Revised: 03/22/2015] [Accepted: 03/24/2015] [Indexed: 11/17/2022]
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43
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Population and forensic data for three sets of forensic genetic markers in four ethnic groups from Iran: Persians, Lurs, Kurds and Azeris. Forensic Sci Int Genet 2015; 17:43-46. [DOI: 10.1016/j.fsigen.2015.03.010] [Citation(s) in RCA: 15] [Impact Index Per Article: 1.5] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 12/19/2014] [Revised: 03/13/2015] [Accepted: 03/15/2015] [Indexed: 12/22/2022]
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44
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Variation of X-chromosomal microsatellites in Belarus within the context of their genetic diversity in Europe. Forensic Sci Int Genet 2015; 16:105-111. [DOI: 10.1016/j.fsigen.2014.12.011] [Citation(s) in RCA: 13] [Impact Index Per Article: 1.3] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 08/23/2014] [Revised: 12/30/2014] [Accepted: 12/31/2014] [Indexed: 11/20/2022]
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45
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Tomas C, Skitsa I, Steinmeier E, Poulsen L, Ampati A, Børsting C, Morling N. Results for five sets of forensic genetic markers studied in a Greek population sample. Forensic Sci Int Genet 2015; 16:132-137. [DOI: 10.1016/j.fsigen.2015.01.001] [Citation(s) in RCA: 19] [Impact Index Per Article: 1.9] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 10/07/2014] [Revised: 12/16/2014] [Accepted: 01/02/2015] [Indexed: 11/30/2022]
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46
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Expanding X-chromosomal forensic haplotype frequencies database: Italian population data of four linkage groups. Forensic Sci Int Genet 2015; 15:127-30. [DOI: 10.1016/j.fsigen.2014.11.008] [Citation(s) in RCA: 16] [Impact Index Per Article: 1.6] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 08/14/2014] [Revised: 10/30/2014] [Accepted: 11/01/2014] [Indexed: 11/19/2022]
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47
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Shrivastava P, Jain T, Gupta U, Trivedi VB. Genetic polymorphism study on 12 X STR loci of investigator Argus X STR kit in Bhil tribal population of Madhya Pradesh, India. Leg Med (Tokyo) 2014; 17:214-7. [PMID: 25487533 DOI: 10.1016/j.legalmed.2014.11.004] [Citation(s) in RCA: 25] [Impact Index Per Article: 2.3] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 04/27/2014] [Revised: 10/29/2014] [Accepted: 11/21/2014] [Indexed: 11/28/2022]
Abstract
The analysis of 12 X STR loci (DXS10103, DXS8378, DXS7132, DXS10134, DXS10074, DXS10101, DXS10135, DXS7423, DXS10146, DXS10079, HPRTB and DXS10148) belonging to four linkage group was done in 183 (100 males and 83 females) unrelated members of Bhil population. Heterozygosity among the studied 12 X STR loci showed a distribution of from 59.7% to 92.8%. No significant difference was recorded in the allele frequencies of males and females. The loci DXS10135 and DXS10101 were found to be most polymorphic. Haplotype diversity was found to be higher than 0.990 for all the four linkage groups. A total of 86, 69, 71 and 71 haplotypes were observed for linkage group I, II, III and IV, respectively. The results showed departure from Hardy-Weinberg equilibrium with respect to three loci DXS10079, DXS10135 and DXS10101. This is first report on these 12 X STR markers from India. All the loci in the Argus X 12 kit were fairly informative in the Bhil population and the population showed significant genetic variation with all the compared populations from other parts of the world.
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Affiliation(s)
- Pankaj Shrivastava
- DNA Fingerprinting Unit, State Forensic Science Laboratory, Department of Home (Police), Govt. of Madhya Pradesh, Sagar 470001 (MP), India.
| | - Toshi Jain
- DNA Fingerprinting Unit, State Forensic Science Laboratory, Department of Home (Police), Govt. of Madhya Pradesh, Sagar 470001 (MP), India
| | - Umang Gupta
- DNA Fingerprinting Unit, State Forensic Science Laboratory, Department of Home (Police), Govt. of Madhya Pradesh, Sagar 470001 (MP), India
| | - Veena Ben Trivedi
- DNA Fingerprinting Unit, State Forensic Science Laboratory, Department of Home (Police), Govt. of Madhya Pradesh, Sagar 470001 (MP), India
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48
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Ferragut JF, Bentayebi K, Castro JA, Ramon C, Picornell A. Genetic analysis of 12 X-chromosome STRs in Western Mediterranean populations. Int J Legal Med 2014; 129:253-5. [DOI: 10.1007/s00414-014-1071-4] [Citation(s) in RCA: 13] [Impact Index Per Article: 1.2] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 04/01/2014] [Accepted: 08/28/2014] [Indexed: 10/24/2022]
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49
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Pinto JC, Pereira V, Marques SL, Amorim A, Alvarez L, Prata MJ. Mirandese language and genetic differentiation in Iberia: a study using X chromosome markers. Ann Hum Biol 2014; 42:20-5. [DOI: 10.3109/03014460.2014.944215] [Citation(s) in RCA: 9] [Impact Index Per Article: 0.8] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 01/22/2023]
Affiliation(s)
- J. C. Pinto
- Faculty of Sciences, University of Porto, Porto, Portugal,
- IPATIMUP, Institute of Molecular Pathology and Immunology, University of Porto, Porto, Portugal,
- CIBIO, Research Center in Biodiversity and Genetic Resources, University of Porto, Vairão, Portugal, and
| | - V. Pereira
- Section of Forensic Genetics, Department of Forensic Medicine, Faculty of Health and Medical Sciences, University of Copenhagen, Copenhagen, Denmark
| | - S. L. Marques
- Faculty of Sciences, University of Porto, Porto, Portugal,
- IPATIMUP, Institute of Molecular Pathology and Immunology, University of Porto, Porto, Portugal,
| | - A. Amorim
- Faculty of Sciences, University of Porto, Porto, Portugal,
- IPATIMUP, Institute of Molecular Pathology and Immunology, University of Porto, Porto, Portugal,
| | - L. Alvarez
- IPATIMUP, Institute of Molecular Pathology and Immunology, University of Porto, Porto, Portugal,
| | - M. J. Prata
- Faculty of Sciences, University of Porto, Porto, Portugal,
- IPATIMUP, Institute of Molecular Pathology and Immunology, University of Porto, Porto, Portugal,
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50
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Kling D, Dell’Amico B, Haddeland PJT, Tillmar AO. Population genetic analysis of 12 X-STRs in a Somali population sample. Forensic Sci Int Genet 2014; 11:e7-8. [DOI: 10.1016/j.fsigen.2014.02.013] [Citation(s) in RCA: 8] [Impact Index Per Article: 0.7] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 01/15/2014] [Revised: 02/18/2014] [Accepted: 02/22/2014] [Indexed: 10/25/2022]
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