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Genetic Flux Between H1 and H2 Haplotypes of the 17q21.31 Inversion in European Population

The chromosome 17q21.31 inversion is a 900-kb common structural polymorphism found primarily in European population. Although the genetic flux within inversion region was assumed to be considerable suppressed, it is still unclear about the details of genetic exchange between the H1 (non-inverted seq...

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Autores principales: Deng, Libin, Tang, Xiaoli, Hao, Xiangwen, Chen, Wei, Lin, Jiari, Yu, Yangyu, Zhang, Dake, Zeng, Changqing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5054451/
https://www.ncbi.nlm.nih.gov/pubmed/21802048
http://dx.doi.org/10.1016/S1672-0229(11)60014-4
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author Deng, Libin
Tang, Xiaoli
Hao, Xiangwen
Chen, Wei
Lin, Jiari
Yu, Yangyu
Zhang, Dake
Zeng, Changqing
author_facet Deng, Libin
Tang, Xiaoli
Hao, Xiangwen
Chen, Wei
Lin, Jiari
Yu, Yangyu
Zhang, Dake
Zeng, Changqing
author_sort Deng, Libin
collection PubMed
description The chromosome 17q21.31 inversion is a 900-kb common structural polymorphism found primarily in European population. Although the genetic flux within inversion region was assumed to be considerable suppressed, it is still unclear about the details of genetic exchange between the H1 (non-inverted sequence) and H2 (inverted sequence) haplotypes of this inversion. Here we describe a refined map of genetic exchanges between pairs of gene arrangements within the 17q21.31 region. Using HapMap phase II data of 1,546 single nucleotide polymorphisms, we successfully deduced 96 H1 and 24 H2 haplotypes in European samples by neighbor-joining tree reconstruction. Furthermore, we identified 15 and 26 candidate tracts with reciprocal and non-reciprocal genetic exchanges, respectively. In all 15 regions harboring reciprocal exchange, haplotypes reconstructed by clone sequencing did not support these exchange events, suggesting that such signals of exchange between two sister chromosomes in certain heterozygous individual were caused by phasing error regions. On the other hand, the finished clone sequencing across 4 of 26 tracts with non-reciprocal genetic flux confirmed that this kind of genetic exchange was caused by gene conversion. In summary, as crossover between pairs of gene arrangements had been considerably suppressed, gene conversion might be the most important mechanism for genetic exchange at 17q21.31.
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spelling pubmed-50544512016-10-14 Genetic Flux Between H1 and H2 Haplotypes of the 17q21.31 Inversion in European Population Deng, Libin Tang, Xiaoli Hao, Xiangwen Chen, Wei Lin, Jiari Yu, Yangyu Zhang, Dake Zeng, Changqing Genomics Proteomics Bioinformatics Article The chromosome 17q21.31 inversion is a 900-kb common structural polymorphism found primarily in European population. Although the genetic flux within inversion region was assumed to be considerable suppressed, it is still unclear about the details of genetic exchange between the H1 (non-inverted sequence) and H2 (inverted sequence) haplotypes of this inversion. Here we describe a refined map of genetic exchanges between pairs of gene arrangements within the 17q21.31 region. Using HapMap phase II data of 1,546 single nucleotide polymorphisms, we successfully deduced 96 H1 and 24 H2 haplotypes in European samples by neighbor-joining tree reconstruction. Furthermore, we identified 15 and 26 candidate tracts with reciprocal and non-reciprocal genetic exchanges, respectively. In all 15 regions harboring reciprocal exchange, haplotypes reconstructed by clone sequencing did not support these exchange events, suggesting that such signals of exchange between two sister chromosomes in certain heterozygous individual were caused by phasing error regions. On the other hand, the finished clone sequencing across 4 of 26 tracts with non-reciprocal genetic flux confirmed that this kind of genetic exchange was caused by gene conversion. In summary, as crossover between pairs of gene arrangements had been considerably suppressed, gene conversion might be the most important mechanism for genetic exchange at 17q21.31. Elsevier 2011-06 2011-07-27 /pmc/articles/PMC5054451/ /pubmed/21802048 http://dx.doi.org/10.1016/S1672-0229(11)60014-4 Text en © 2011 Beijing Institute of Genomics http://creativecommons.org/licenses/by-nc-sa/3.0/ This is an open access article under the CC BY-NC-SA license (http://creativecommons.org/licenses/by-nc-sa/3.0/).
spellingShingle Article
Deng, Libin
Tang, Xiaoli
Hao, Xiangwen
Chen, Wei
Lin, Jiari
Yu, Yangyu
Zhang, Dake
Zeng, Changqing
Genetic Flux Between H1 and H2 Haplotypes of the 17q21.31 Inversion in European Population
title Genetic Flux Between H1 and H2 Haplotypes of the 17q21.31 Inversion in European Population
title_full Genetic Flux Between H1 and H2 Haplotypes of the 17q21.31 Inversion in European Population
title_fullStr Genetic Flux Between H1 and H2 Haplotypes of the 17q21.31 Inversion in European Population
title_full_unstemmed Genetic Flux Between H1 and H2 Haplotypes of the 17q21.31 Inversion in European Population
title_short Genetic Flux Between H1 and H2 Haplotypes of the 17q21.31 Inversion in European Population
title_sort genetic flux between h1 and h2 haplotypes of the 17q21.31 inversion in european population
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5054451/
https://www.ncbi.nlm.nih.gov/pubmed/21802048
http://dx.doi.org/10.1016/S1672-0229(11)60014-4
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