Culture creates genetic structure in the Caucasus: Autosomal, mitochondrial, and Y-chromosomal variation in Daghestan

<p>Abstract</p> <p>Background</p> <p>Near the junction of three major continents, the Caucasus region has been an important thoroughfare for human migration. While the Caucasus Mountains have diverted human traffic to the few lowland regions that provide a gateway from...

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Main Authors: Harpending Henry C, Bulayeva Kazima, Watkins W Scott, Marchani Elizabeth E, Jorde Lynn B
Format: Article
Language:English
Published: BMC 2008-07-01
Series:BMC Genetics
Online Access:http://www.biomedcentral.com/1471-2156/9/47
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spelling doaj-16720751e3ae4bd781a4db193c93dc982020-11-25T03:42:59ZengBMCBMC Genetics1471-21562008-07-01914710.1186/1471-2156-9-47Culture creates genetic structure in the Caucasus: Autosomal, mitochondrial, and Y-chromosomal variation in DaghestanHarpending Henry CBulayeva KazimaWatkins W ScottMarchani Elizabeth EJorde Lynn B<p>Abstract</p> <p>Background</p> <p>Near the junction of three major continents, the Caucasus region has been an important thoroughfare for human migration. While the Caucasus Mountains have diverted human traffic to the few lowland regions that provide a gateway from north to south between the Caspian and Black Seas, highland populations have been isolated by their remote geographic location and their practice of patrilocal endogamy. We investigate how these cultural and historical differences between highland and lowland populations have affected patterns of genetic diversity. We test 1) whether the highland practice of patrilocal endogamy has generated sex-specific population relationships, and 2) whether the history of migration and military conquest associated with the lowland populations has left Central Asian genes in the Caucasus, by comparing genetic diversity and pairwise population relationships between Daghestani populations and reference populations throughout Europe and Asia for autosomal, mitochondrial, and Y-chromosomal markers.</p> <p>Results</p> <p>We found that the highland Daghestani populations had contrasting histories for the mitochondrial DNA and Y-chromosome data sets. Y-chromosomal haplogroup diversity was reduced among highland Daghestani populations when compared to other populations and to highland Daghestani mitochondrial DNA haplogroup diversity. Lowland Daghestani populations showed Turkish and Central Asian affinities for both mitochondrial and Y-chromosomal data sets. Autosomal population histories are strongly correlated to the pattern observed for the mitochondrial DNA data set, while the correlation between the mitochondrial DNA and Y-chromosome distance matrices was weak and not significant.</p> <p>Conclusion</p> <p>The reduced Y-chromosomal diversity exhibited by highland Daghestani populations is consistent with genetic drift caused by patrilocal endogamy. Mitochondrial and Y-chromosomal phylogeographic comparisons indicate a common Near Eastern origin of highland populations. Lowland Daghestani populations show varying influence from Near Eastern and Central Asian populations.</p> http://www.biomedcentral.com/1471-2156/9/47
collection DOAJ
language English
format Article
sources DOAJ
author Harpending Henry C
Bulayeva Kazima
Watkins W Scott
Marchani Elizabeth E
Jorde Lynn B
spellingShingle Harpending Henry C
Bulayeva Kazima
Watkins W Scott
Marchani Elizabeth E
Jorde Lynn B
Culture creates genetic structure in the Caucasus: Autosomal, mitochondrial, and Y-chromosomal variation in Daghestan
BMC Genetics
author_facet Harpending Henry C
Bulayeva Kazima
Watkins W Scott
Marchani Elizabeth E
Jorde Lynn B
author_sort Harpending Henry C
title Culture creates genetic structure in the Caucasus: Autosomal, mitochondrial, and Y-chromosomal variation in Daghestan
title_short Culture creates genetic structure in the Caucasus: Autosomal, mitochondrial, and Y-chromosomal variation in Daghestan
title_full Culture creates genetic structure in the Caucasus: Autosomal, mitochondrial, and Y-chromosomal variation in Daghestan
title_fullStr Culture creates genetic structure in the Caucasus: Autosomal, mitochondrial, and Y-chromosomal variation in Daghestan
title_full_unstemmed Culture creates genetic structure in the Caucasus: Autosomal, mitochondrial, and Y-chromosomal variation in Daghestan
title_sort culture creates genetic structure in the caucasus: autosomal, mitochondrial, and y-chromosomal variation in daghestan
publisher BMC
series BMC Genetics
issn 1471-2156
publishDate 2008-07-01
description <p>Abstract</p> <p>Background</p> <p>Near the junction of three major continents, the Caucasus region has been an important thoroughfare for human migration. While the Caucasus Mountains have diverted human traffic to the few lowland regions that provide a gateway from north to south between the Caspian and Black Seas, highland populations have been isolated by their remote geographic location and their practice of patrilocal endogamy. We investigate how these cultural and historical differences between highland and lowland populations have affected patterns of genetic diversity. We test 1) whether the highland practice of patrilocal endogamy has generated sex-specific population relationships, and 2) whether the history of migration and military conquest associated with the lowland populations has left Central Asian genes in the Caucasus, by comparing genetic diversity and pairwise population relationships between Daghestani populations and reference populations throughout Europe and Asia for autosomal, mitochondrial, and Y-chromosomal markers.</p> <p>Results</p> <p>We found that the highland Daghestani populations had contrasting histories for the mitochondrial DNA and Y-chromosome data sets. Y-chromosomal haplogroup diversity was reduced among highland Daghestani populations when compared to other populations and to highland Daghestani mitochondrial DNA haplogroup diversity. Lowland Daghestani populations showed Turkish and Central Asian affinities for both mitochondrial and Y-chromosomal data sets. Autosomal population histories are strongly correlated to the pattern observed for the mitochondrial DNA data set, while the correlation between the mitochondrial DNA and Y-chromosome distance matrices was weak and not significant.</p> <p>Conclusion</p> <p>The reduced Y-chromosomal diversity exhibited by highland Daghestani populations is consistent with genetic drift caused by patrilocal endogamy. Mitochondrial and Y-chromosomal phylogeographic comparisons indicate a common Near Eastern origin of highland populations. Lowland Daghestani populations show varying influence from Near Eastern and Central Asian populations.</p>
url http://www.biomedcentral.com/1471-2156/9/47
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