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Haplotype frequencies of 17 Y-chromosomal short tandem repeat loci from the Cukurova region of Turkey

AIM: To investigate the distribution of 17 Y-short tandem repeat (STR) loci in the population of the Cukurova region of Turkey. METHODS: In the period between 2009 and 2010, we investigated the distribution of 17 Y-STRs in a sample of 249 unrelated healthy men from the Cukurova region of Turkey. Gen...

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Autores principales: Serin, Ayse, Canan, Husniye, Alper, Behnan, Sertdemir, Yasar
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Croatian Medical Schools 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3243320/
https://www.ncbi.nlm.nih.gov/pubmed/22180269
http://dx.doi.org/10.3325/cmj.2011.52.703
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author Serin, Ayse
Canan, Husniye
Alper, Behnan
Sertdemir, Yasar
author_facet Serin, Ayse
Canan, Husniye
Alper, Behnan
Sertdemir, Yasar
author_sort Serin, Ayse
collection PubMed
description AIM: To investigate the distribution of 17 Y-short tandem repeat (STR) loci in the population of the Cukurova region of Turkey. METHODS: In the period between 2009 and 2010, we investigated the distribution of 17 Y-STRs in a sample of 249 unrelated healthy men from the Cukurova region of Turkey. Genomic DNA was extracted with InstaGene matrix and Y-STRs were determined using the AmpFISTR Yfiler PCR amplification kit. Gene and haplotype diversity values were estimated using the Arlequin software. To compare our data to other populations, population pairwise genetic distances and associated probability values were calculated using the Y Chromosome Haplotype Reference Database Web site software. RESULTS: At 17 Y-STR loci we detected 148 alleles. The lowest gene diversity in this region was 0.51 for DYS391 and the highest 0.95 for DYS385a/b. Haplotype diversity was 0.9997 ± 0.0004. We compared our data with haplotype data of other Turkish populations and no significant differences were found, except with Ankara population (Φ(st) = 0.025, P = 0.018). Comparisons were also made with the neighboring populations using analysis of molecular variance of the Y-STR loci genetic structure and our population was nearest to Lenkoran-Azerbaijani (Φ(st) = 0.012, P = 0.068) and Iranian Ahvaz population (Φ(st) = 0.007, P = 0.173), followed by Greek (Φ(st) = 0.026, P = 0.000) and Russian (Φ(st) = 0.048, P = 0.000) population. Other countries like Portugal, Spain, Italy, Egypt, Israel (Palestinian Authority Area), and Taiwan showed a high genetic distance from our population. CONCLUSION: Our study showed that Y-STR polymorphisms were a powerful discrimination tool for routine forensic applications and could be used in genealogical investigations.
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spelling pubmed-32433202011-12-21 Haplotype frequencies of 17 Y-chromosomal short tandem repeat loci from the Cukurova region of Turkey Serin, Ayse Canan, Husniye Alper, Behnan Sertdemir, Yasar Croat Med J Basic Science AIM: To investigate the distribution of 17 Y-short tandem repeat (STR) loci in the population of the Cukurova region of Turkey. METHODS: In the period between 2009 and 2010, we investigated the distribution of 17 Y-STRs in a sample of 249 unrelated healthy men from the Cukurova region of Turkey. Genomic DNA was extracted with InstaGene matrix and Y-STRs were determined using the AmpFISTR Yfiler PCR amplification kit. Gene and haplotype diversity values were estimated using the Arlequin software. To compare our data to other populations, population pairwise genetic distances and associated probability values were calculated using the Y Chromosome Haplotype Reference Database Web site software. RESULTS: At 17 Y-STR loci we detected 148 alleles. The lowest gene diversity in this region was 0.51 for DYS391 and the highest 0.95 for DYS385a/b. Haplotype diversity was 0.9997 ± 0.0004. We compared our data with haplotype data of other Turkish populations and no significant differences were found, except with Ankara population (Φ(st) = 0.025, P = 0.018). Comparisons were also made with the neighboring populations using analysis of molecular variance of the Y-STR loci genetic structure and our population was nearest to Lenkoran-Azerbaijani (Φ(st) = 0.012, P = 0.068) and Iranian Ahvaz population (Φ(st) = 0.007, P = 0.173), followed by Greek (Φ(st) = 0.026, P = 0.000) and Russian (Φ(st) = 0.048, P = 0.000) population. Other countries like Portugal, Spain, Italy, Egypt, Israel (Palestinian Authority Area), and Taiwan showed a high genetic distance from our population. CONCLUSION: Our study showed that Y-STR polymorphisms were a powerful discrimination tool for routine forensic applications and could be used in genealogical investigations. Croatian Medical Schools 2011-12 /pmc/articles/PMC3243320/ /pubmed/22180269 http://dx.doi.org/10.3325/cmj.2011.52.703 Text en Copyright © 2011 by the Croatian Medical Journal. All rights reserved. http://creativecommons.org/licenses/by/2.5/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Basic Science
Serin, Ayse
Canan, Husniye
Alper, Behnan
Sertdemir, Yasar
Haplotype frequencies of 17 Y-chromosomal short tandem repeat loci from the Cukurova region of Turkey
title Haplotype frequencies of 17 Y-chromosomal short tandem repeat loci from the Cukurova region of Turkey
title_full Haplotype frequencies of 17 Y-chromosomal short tandem repeat loci from the Cukurova region of Turkey
title_fullStr Haplotype frequencies of 17 Y-chromosomal short tandem repeat loci from the Cukurova region of Turkey
title_full_unstemmed Haplotype frequencies of 17 Y-chromosomal short tandem repeat loci from the Cukurova region of Turkey
title_short Haplotype frequencies of 17 Y-chromosomal short tandem repeat loci from the Cukurova region of Turkey
title_sort haplotype frequencies of 17 y-chromosomal short tandem repeat loci from the cukurova region of turkey
topic Basic Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3243320/
https://www.ncbi.nlm.nih.gov/pubmed/22180269
http://dx.doi.org/10.3325/cmj.2011.52.703
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