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A genome triplication associated with early diversification of the core eudicots

BACKGROUND: Although it is agreed that a major polyploidy event, gamma, occurred within the eudicots, the phylogenetic placement of the event remains unclear. RESULTS: To determine when this polyploidization occurred relative to speciation events in angiosperm history, we employed a phylogenomic app...

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Autores principales: Jiao, Yuannian, Leebens-Mack, Jim, Ayyampalayam, Saravanaraj, Bowers, John E, McKain, Michael R, McNeal, Joel, Rolf, Megan, Ruzicka, Daniel R, Wafula, Eric, Wickett, Norman J, Wu, Xiaolei, Zhang, Yong, Wang, Jun, Zhang, Yeting, Carpenter, Eric J, Deyholos, Michael K, Kutchan, Toni M, Chanderbali, Andre S, Soltis, Pamela S, Stevenson, Dennis W, McCombie, Richard, Pires, J Chris, Wong, Gane Ka-Shu, Soltis, Douglas E, dePamphilis, Claude W
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3334584/
https://www.ncbi.nlm.nih.gov/pubmed/22280555
http://dx.doi.org/10.1186/gb-2012-13-1-r3
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author Jiao, Yuannian
Leebens-Mack, Jim
Ayyampalayam, Saravanaraj
Bowers, John E
McKain, Michael R
McNeal, Joel
Rolf, Megan
Ruzicka, Daniel R
Wafula, Eric
Wickett, Norman J
Wu, Xiaolei
Zhang, Yong
Wang, Jun
Zhang, Yeting
Carpenter, Eric J
Deyholos, Michael K
Kutchan, Toni M
Chanderbali, Andre S
Soltis, Pamela S
Stevenson, Dennis W
McCombie, Richard
Pires, J Chris
Wong, Gane Ka-Shu
Soltis, Douglas E
dePamphilis, Claude W
author_facet Jiao, Yuannian
Leebens-Mack, Jim
Ayyampalayam, Saravanaraj
Bowers, John E
McKain, Michael R
McNeal, Joel
Rolf, Megan
Ruzicka, Daniel R
Wafula, Eric
Wickett, Norman J
Wu, Xiaolei
Zhang, Yong
Wang, Jun
Zhang, Yeting
Carpenter, Eric J
Deyholos, Michael K
Kutchan, Toni M
Chanderbali, Andre S
Soltis, Pamela S
Stevenson, Dennis W
McCombie, Richard
Pires, J Chris
Wong, Gane Ka-Shu
Soltis, Douglas E
dePamphilis, Claude W
author_sort Jiao, Yuannian
collection PubMed
description BACKGROUND: Although it is agreed that a major polyploidy event, gamma, occurred within the eudicots, the phylogenetic placement of the event remains unclear. RESULTS: To determine when this polyploidization occurred relative to speciation events in angiosperm history, we employed a phylogenomic approach to investigate the timing of gene set duplications located on syntenic gamma blocks. We populated 769 putative gene families with large sets of homologs obtained from public transcriptomes of basal angiosperms, magnoliids, asterids, and more than 91.8 gigabases of new next-generation transcriptome sequences of non-grass monocots and basal eudicots. The overwhelming majority (95%) of well-resolved gamma duplications was placed before the separation of rosids and asterids and after the split of monocots and eudicots, providing strong evidence that the gamma polyploidy event occurred early in eudicot evolution. Further, the majority of gene duplications was placed after the divergence of the Ranunculales and core eudicots, indicating that the gamma appears to be restricted to core eudicots. Molecular dating estimates indicate that the duplication events were intensely concentrated around 117 million years ago. CONCLUSIONS: The rapid radiation of core eudicot lineages that gave rise to nearly 75% of angiosperm species appears to have occurred coincidentally or shortly following the gamma triplication event. Reconciliation of gene trees with a species phylogeny can elucidate the timing of major events in genome evolution, even when genome sequences are only available for a subset of species represented in the gene trees. Comprehensive transcriptome datasets are valuable complements to genome sequences for high-resolution phylogenomic analysis.
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spelling pubmed-33345842012-04-25 A genome triplication associated with early diversification of the core eudicots Jiao, Yuannian Leebens-Mack, Jim Ayyampalayam, Saravanaraj Bowers, John E McKain, Michael R McNeal, Joel Rolf, Megan Ruzicka, Daniel R Wafula, Eric Wickett, Norman J Wu, Xiaolei Zhang, Yong Wang, Jun Zhang, Yeting Carpenter, Eric J Deyholos, Michael K Kutchan, Toni M Chanderbali, Andre S Soltis, Pamela S Stevenson, Dennis W McCombie, Richard Pires, J Chris Wong, Gane Ka-Shu Soltis, Douglas E dePamphilis, Claude W Genome Biol Research BACKGROUND: Although it is agreed that a major polyploidy event, gamma, occurred within the eudicots, the phylogenetic placement of the event remains unclear. RESULTS: To determine when this polyploidization occurred relative to speciation events in angiosperm history, we employed a phylogenomic approach to investigate the timing of gene set duplications located on syntenic gamma blocks. We populated 769 putative gene families with large sets of homologs obtained from public transcriptomes of basal angiosperms, magnoliids, asterids, and more than 91.8 gigabases of new next-generation transcriptome sequences of non-grass monocots and basal eudicots. The overwhelming majority (95%) of well-resolved gamma duplications was placed before the separation of rosids and asterids and after the split of monocots and eudicots, providing strong evidence that the gamma polyploidy event occurred early in eudicot evolution. Further, the majority of gene duplications was placed after the divergence of the Ranunculales and core eudicots, indicating that the gamma appears to be restricted to core eudicots. Molecular dating estimates indicate that the duplication events were intensely concentrated around 117 million years ago. CONCLUSIONS: The rapid radiation of core eudicot lineages that gave rise to nearly 75% of angiosperm species appears to have occurred coincidentally or shortly following the gamma triplication event. Reconciliation of gene trees with a species phylogeny can elucidate the timing of major events in genome evolution, even when genome sequences are only available for a subset of species represented in the gene trees. Comprehensive transcriptome datasets are valuable complements to genome sequences for high-resolution phylogenomic analysis. BioMed Central 2012 2012-01-26 /pmc/articles/PMC3334584/ /pubmed/22280555 http://dx.doi.org/10.1186/gb-2012-13-1-r3 Text en Copyright ©2012 Jiao et al.; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
Jiao, Yuannian
Leebens-Mack, Jim
Ayyampalayam, Saravanaraj
Bowers, John E
McKain, Michael R
McNeal, Joel
Rolf, Megan
Ruzicka, Daniel R
Wafula, Eric
Wickett, Norman J
Wu, Xiaolei
Zhang, Yong
Wang, Jun
Zhang, Yeting
Carpenter, Eric J
Deyholos, Michael K
Kutchan, Toni M
Chanderbali, Andre S
Soltis, Pamela S
Stevenson, Dennis W
McCombie, Richard
Pires, J Chris
Wong, Gane Ka-Shu
Soltis, Douglas E
dePamphilis, Claude W
A genome triplication associated with early diversification of the core eudicots
title A genome triplication associated with early diversification of the core eudicots
title_full A genome triplication associated with early diversification of the core eudicots
title_fullStr A genome triplication associated with early diversification of the core eudicots
title_full_unstemmed A genome triplication associated with early diversification of the core eudicots
title_short A genome triplication associated with early diversification of the core eudicots
title_sort genome triplication associated with early diversification of the core eudicots
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3334584/
https://www.ncbi.nlm.nih.gov/pubmed/22280555
http://dx.doi.org/10.1186/gb-2012-13-1-r3
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