Nucleotide diversity maps reveal variation in diversity among wheat genomes and chromosomes

<p>Abstract</p> <p>Background</p> <p>A genome-wide assessment of nucleotide diversity in a polyploid species must minimize the inclusion of homoeologous sequences into diversity estimates and reliably allocate individual haplotypes into their respective genomes. The sam...

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Main Authors: McGuire Patrick E, Matthews David E, Ma Yaqin Q, Luo Ming-Cheng, Lazo Gerard R, Huo Naxin, Heo Hwayoung, Hadam Jakub, Gu Yong Q, Gill Bikram S, Dubcovsky Jorge, Deal Karin R, Crossman Curt C, Conley Emily J, Coleman-Derr Devin, Clegg Michael T, Blake Nancy, Anderson James A, Anderson Olin D, Akhunova Alina R, Akhunov Eduard D, Morrell Peter L, Qualset Calvin O, Renfro James, Tabanao Dindo, Talbert Luther E, Tian Chao, Toleno Donna M, Warburton Marilyn L, You Frank M, Zhang Wenjun, Dvorak Jan
Format: Article
Language:English
Published: BMC 2010-12-01
Series:BMC Genomics
Online Access:http://www.biomedcentral.com/1471-2164/11/702
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spelling doaj-df83e1b3bb9b4dbca70ce70e88b372932020-11-25T01:05:30ZengBMCBMC Genomics1471-21642010-12-0111170210.1186/1471-2164-11-702Nucleotide diversity maps reveal variation in diversity among wheat genomes and chromosomesMcGuire Patrick EMatthews David EMa Yaqin QLuo Ming-ChengLazo Gerard RHuo NaxinHeo HwayoungHadam JakubGu Yong QGill Bikram SDubcovsky JorgeDeal Karin RCrossman Curt CConley Emily JColeman-Derr DevinClegg Michael TBlake NancyAnderson James AAnderson Olin DAkhunova Alina RAkhunov Eduard DMorrell Peter LQualset Calvin ORenfro JamesTabanao DindoTalbert Luther ETian ChaoToleno Donna MWarburton Marilyn LYou Frank MZhang WenjunDvorak Jan<p>Abstract</p> <p>Background</p> <p>A genome-wide assessment of nucleotide diversity in a polyploid species must minimize the inclusion of homoeologous sequences into diversity estimates and reliably allocate individual haplotypes into their respective genomes. The same requirements complicate the development and deployment of single nucleotide polymorphism (SNP) markers in polyploid species. We report here a strategy that satisfies these requirements and deploy it in the sequencing of genes in cultivated hexaploid wheat (<it>Triticum aestivum</it>, genomes AABBDD) and wild tetraploid wheat (<it>Triticum turgidum </it>ssp. <it>dicoccoides</it>, genomes AABB) from the putative site of wheat domestication in Turkey. Data are used to assess the distribution of diversity among and within wheat genomes and to develop a panel of SNP markers for polyploid wheat.</p> <p>Results</p> <p>Nucleotide diversity was estimated in 2114 wheat genes and was similar between the A and B genomes and reduced in the D genome. Within a genome, diversity was diminished on some chromosomes. Low diversity was always accompanied by an excess of rare alleles. A total of 5,471 SNPs was discovered in 1791 wheat genes. Totals of 1,271, 1,218, and 2,203 SNPs were discovered in 488, 463, and 641 genes of wheat putative diploid ancestors, <it>T. urartu</it>, <it>Aegilops speltoides</it>, and <it>Ae. tauschii</it>, respectively. A public database containing genome-specific primers, SNPs, and other information was constructed. A total of 987 genes with nucleotide diversity estimated in one or more of the wheat genomes was placed on an <it>Ae. tauschii </it>genetic map, and the map was superimposed on wheat deletion-bin maps. The agreement between the maps was assessed.</p> <p>Conclusions</p> <p>In a young polyploid, exemplified by <it>T. aestivum</it>, ancestral species are the primary source of genetic diversity. Low effective recombination due to self-pollination and a genetic mechanism precluding homoeologous chromosome pairing during polyploid meiosis can lead to the loss of diversity from large chromosomal regions. The net effect of these factors in <it>T. aestivum </it>is large variation in diversity among genomes and chromosomes, which impacts the development of SNP markers and their practical utility. Accumulation of new mutations in older polyploid species, such as wild emmer, results in increased diversity and its more uniform distribution across the genome.</p> http://www.biomedcentral.com/1471-2164/11/702
collection DOAJ
language English
format Article
sources DOAJ
author McGuire Patrick E
Matthews David E
Ma Yaqin Q
Luo Ming-Cheng
Lazo Gerard R
Huo Naxin
Heo Hwayoung
Hadam Jakub
Gu Yong Q
Gill Bikram S
Dubcovsky Jorge
Deal Karin R
Crossman Curt C
Conley Emily J
Coleman-Derr Devin
Clegg Michael T
Blake Nancy
Anderson James A
Anderson Olin D
Akhunova Alina R
Akhunov Eduard D
Morrell Peter L
Qualset Calvin O
Renfro James
Tabanao Dindo
Talbert Luther E
Tian Chao
Toleno Donna M
Warburton Marilyn L
You Frank M
Zhang Wenjun
Dvorak Jan
spellingShingle McGuire Patrick E
Matthews David E
Ma Yaqin Q
Luo Ming-Cheng
Lazo Gerard R
Huo Naxin
Heo Hwayoung
Hadam Jakub
Gu Yong Q
Gill Bikram S
Dubcovsky Jorge
Deal Karin R
Crossman Curt C
Conley Emily J
Coleman-Derr Devin
Clegg Michael T
Blake Nancy
Anderson James A
Anderson Olin D
Akhunova Alina R
Akhunov Eduard D
Morrell Peter L
Qualset Calvin O
Renfro James
Tabanao Dindo
Talbert Luther E
Tian Chao
Toleno Donna M
Warburton Marilyn L
You Frank M
Zhang Wenjun
Dvorak Jan
Nucleotide diversity maps reveal variation in diversity among wheat genomes and chromosomes
BMC Genomics
author_facet McGuire Patrick E
Matthews David E
Ma Yaqin Q
Luo Ming-Cheng
Lazo Gerard R
Huo Naxin
Heo Hwayoung
Hadam Jakub
Gu Yong Q
Gill Bikram S
Dubcovsky Jorge
Deal Karin R
Crossman Curt C
Conley Emily J
Coleman-Derr Devin
Clegg Michael T
Blake Nancy
Anderson James A
Anderson Olin D
Akhunova Alina R
Akhunov Eduard D
Morrell Peter L
Qualset Calvin O
Renfro James
Tabanao Dindo
Talbert Luther E
Tian Chao
Toleno Donna M
Warburton Marilyn L
You Frank M
Zhang Wenjun
Dvorak Jan
author_sort McGuire Patrick E
title Nucleotide diversity maps reveal variation in diversity among wheat genomes and chromosomes
title_short Nucleotide diversity maps reveal variation in diversity among wheat genomes and chromosomes
title_full Nucleotide diversity maps reveal variation in diversity among wheat genomes and chromosomes
title_fullStr Nucleotide diversity maps reveal variation in diversity among wheat genomes and chromosomes
title_full_unstemmed Nucleotide diversity maps reveal variation in diversity among wheat genomes and chromosomes
title_sort nucleotide diversity maps reveal variation in diversity among wheat genomes and chromosomes
publisher BMC
series BMC Genomics
issn 1471-2164
publishDate 2010-12-01
description <p>Abstract</p> <p>Background</p> <p>A genome-wide assessment of nucleotide diversity in a polyploid species must minimize the inclusion of homoeologous sequences into diversity estimates and reliably allocate individual haplotypes into their respective genomes. The same requirements complicate the development and deployment of single nucleotide polymorphism (SNP) markers in polyploid species. We report here a strategy that satisfies these requirements and deploy it in the sequencing of genes in cultivated hexaploid wheat (<it>Triticum aestivum</it>, genomes AABBDD) and wild tetraploid wheat (<it>Triticum turgidum </it>ssp. <it>dicoccoides</it>, genomes AABB) from the putative site of wheat domestication in Turkey. Data are used to assess the distribution of diversity among and within wheat genomes and to develop a panel of SNP markers for polyploid wheat.</p> <p>Results</p> <p>Nucleotide diversity was estimated in 2114 wheat genes and was similar between the A and B genomes and reduced in the D genome. Within a genome, diversity was diminished on some chromosomes. Low diversity was always accompanied by an excess of rare alleles. A total of 5,471 SNPs was discovered in 1791 wheat genes. Totals of 1,271, 1,218, and 2,203 SNPs were discovered in 488, 463, and 641 genes of wheat putative diploid ancestors, <it>T. urartu</it>, <it>Aegilops speltoides</it>, and <it>Ae. tauschii</it>, respectively. A public database containing genome-specific primers, SNPs, and other information was constructed. A total of 987 genes with nucleotide diversity estimated in one or more of the wheat genomes was placed on an <it>Ae. tauschii </it>genetic map, and the map was superimposed on wheat deletion-bin maps. The agreement between the maps was assessed.</p> <p>Conclusions</p> <p>In a young polyploid, exemplified by <it>T. aestivum</it>, ancestral species are the primary source of genetic diversity. Low effective recombination due to self-pollination and a genetic mechanism precluding homoeologous chromosome pairing during polyploid meiosis can lead to the loss of diversity from large chromosomal regions. The net effect of these factors in <it>T. aestivum </it>is large variation in diversity among genomes and chromosomes, which impacts the development of SNP markers and their practical utility. Accumulation of new mutations in older polyploid species, such as wild emmer, results in increased diversity and its more uniform distribution across the genome.</p>
url http://www.biomedcentral.com/1471-2164/11/702
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