Cargando…

A Six Nuclear Gene Phylogeny of Citrus (Rutaceae) Taking into Account Hybridization and Lineage Sorting

BACKGROUND: Genus Citrus (Rutaceae) comprises many important cultivated species that generally hybridize easily. Phylogenetic study of a group showing extensive hybridization is challenging. Since the genus Citrus has diverged recently (4–12 Ma), incomplete lineage sorting of ancestral polymorphisms...

Descripción completa

Detalles Bibliográficos
Autores principales: Ramadugu, Chandrika, Pfeil, Bernard E., Keremane, Manjunath L., Lee, Richard F., Maureira-Butler, Ivan J., Roose, Mikeal L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3713030/
https://www.ncbi.nlm.nih.gov/pubmed/23874615
http://dx.doi.org/10.1371/journal.pone.0068410
_version_ 1782277146526351360
author Ramadugu, Chandrika
Pfeil, Bernard E.
Keremane, Manjunath L.
Lee, Richard F.
Maureira-Butler, Ivan J.
Roose, Mikeal L.
author_facet Ramadugu, Chandrika
Pfeil, Bernard E.
Keremane, Manjunath L.
Lee, Richard F.
Maureira-Butler, Ivan J.
Roose, Mikeal L.
author_sort Ramadugu, Chandrika
collection PubMed
description BACKGROUND: Genus Citrus (Rutaceae) comprises many important cultivated species that generally hybridize easily. Phylogenetic study of a group showing extensive hybridization is challenging. Since the genus Citrus has diverged recently (4–12 Ma), incomplete lineage sorting of ancestral polymorphisms is also likely to cause discrepancies among genes in phylogenetic inferences. Incongruence of gene trees is observed and it is essential to unravel the processes that cause inconsistencies in order to understand the phylogenetic relationships among the species. METHODOLOGY AND PRINCIPAL FINDINGS: (1) We generated phylogenetic trees using haplotype sequences of six low copy nuclear genes. (2) Published simple sequence repeat data were re-analyzed to study population structure and the results were compared with the phylogenetic trees constructed using sequence data and coalescence simulations. (3) To distinguish between hybridization and incomplete lineage sorting, we developed and utilized a coalescence simulation approach. In other studies, species trees have been inferred despite the possibility of hybridization having occurred and used to generate null distributions of the effect of lineage sorting alone (by coalescent simulation). Since this is problematic, we instead generate these distributions directly from observed gene trees. Of the six trees generated, we used the most resolved three to detect hybrids. We found that 11 of 33 samples appear to be affected by historical hybridization. Analysis of the remaining three genes supported the conclusions from the hybrid detection test. CONCLUSIONS: We have identified or confirmed probable hybrid origins for several Citrus cultivars using three different approaches–gene phylogenies, population structure analysis and coalescence simulation. Hybridization and incomplete lineage sorting were identified primarily based on differences among gene phylogenies with reference to null expectations via coalescence simulations. We conclude that identifying hybridization as a frequent cause of incongruence among gene trees is critical to correctly infer the phylogeny among species of Citrus.
format Online
Article
Text
id pubmed-3713030
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-37130302013-07-19 A Six Nuclear Gene Phylogeny of Citrus (Rutaceae) Taking into Account Hybridization and Lineage Sorting Ramadugu, Chandrika Pfeil, Bernard E. Keremane, Manjunath L. Lee, Richard F. Maureira-Butler, Ivan J. Roose, Mikeal L. PLoS One Research Article BACKGROUND: Genus Citrus (Rutaceae) comprises many important cultivated species that generally hybridize easily. Phylogenetic study of a group showing extensive hybridization is challenging. Since the genus Citrus has diverged recently (4–12 Ma), incomplete lineage sorting of ancestral polymorphisms is also likely to cause discrepancies among genes in phylogenetic inferences. Incongruence of gene trees is observed and it is essential to unravel the processes that cause inconsistencies in order to understand the phylogenetic relationships among the species. METHODOLOGY AND PRINCIPAL FINDINGS: (1) We generated phylogenetic trees using haplotype sequences of six low copy nuclear genes. (2) Published simple sequence repeat data were re-analyzed to study population structure and the results were compared with the phylogenetic trees constructed using sequence data and coalescence simulations. (3) To distinguish between hybridization and incomplete lineage sorting, we developed and utilized a coalescence simulation approach. In other studies, species trees have been inferred despite the possibility of hybridization having occurred and used to generate null distributions of the effect of lineage sorting alone (by coalescent simulation). Since this is problematic, we instead generate these distributions directly from observed gene trees. Of the six trees generated, we used the most resolved three to detect hybrids. We found that 11 of 33 samples appear to be affected by historical hybridization. Analysis of the remaining three genes supported the conclusions from the hybrid detection test. CONCLUSIONS: We have identified or confirmed probable hybrid origins for several Citrus cultivars using three different approaches–gene phylogenies, population structure analysis and coalescence simulation. Hybridization and incomplete lineage sorting were identified primarily based on differences among gene phylogenies with reference to null expectations via coalescence simulations. We conclude that identifying hybridization as a frequent cause of incongruence among gene trees is critical to correctly infer the phylogeny among species of Citrus. Public Library of Science 2013-07-16 /pmc/articles/PMC3713030/ /pubmed/23874615 http://dx.doi.org/10.1371/journal.pone.0068410 Text en https://creativecommons.org/publicdomain/zero/1.0/ This is an open-access article distributed under the terms of the Creative Commons Public Domain declaration, which stipulates that, once placed in the public domain, this work may be freely reproduced, distributed, transmitted, modified, built upon, or otherwise used by anyone for any lawful purpose.
spellingShingle Research Article
Ramadugu, Chandrika
Pfeil, Bernard E.
Keremane, Manjunath L.
Lee, Richard F.
Maureira-Butler, Ivan J.
Roose, Mikeal L.
A Six Nuclear Gene Phylogeny of Citrus (Rutaceae) Taking into Account Hybridization and Lineage Sorting
title A Six Nuclear Gene Phylogeny of Citrus (Rutaceae) Taking into Account Hybridization and Lineage Sorting
title_full A Six Nuclear Gene Phylogeny of Citrus (Rutaceae) Taking into Account Hybridization and Lineage Sorting
title_fullStr A Six Nuclear Gene Phylogeny of Citrus (Rutaceae) Taking into Account Hybridization and Lineage Sorting
title_full_unstemmed A Six Nuclear Gene Phylogeny of Citrus (Rutaceae) Taking into Account Hybridization and Lineage Sorting
title_short A Six Nuclear Gene Phylogeny of Citrus (Rutaceae) Taking into Account Hybridization and Lineage Sorting
title_sort six nuclear gene phylogeny of citrus (rutaceae) taking into account hybridization and lineage sorting
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3713030/
https://www.ncbi.nlm.nih.gov/pubmed/23874615
http://dx.doi.org/10.1371/journal.pone.0068410
work_keys_str_mv AT ramaduguchandrika asixnucleargenephylogenyofcitrusrutaceaetakingintoaccounthybridizationandlineagesorting
AT pfeilbernarde asixnucleargenephylogenyofcitrusrutaceaetakingintoaccounthybridizationandlineagesorting
AT keremanemanjunathl asixnucleargenephylogenyofcitrusrutaceaetakingintoaccounthybridizationandlineagesorting
AT leerichardf asixnucleargenephylogenyofcitrusrutaceaetakingintoaccounthybridizationandlineagesorting
AT maureirabutlerivanj asixnucleargenephylogenyofcitrusrutaceaetakingintoaccounthybridizationandlineagesorting
AT roosemikeall asixnucleargenephylogenyofcitrusrutaceaetakingintoaccounthybridizationandlineagesorting
AT ramaduguchandrika sixnucleargenephylogenyofcitrusrutaceaetakingintoaccounthybridizationandlineagesorting
AT pfeilbernarde sixnucleargenephylogenyofcitrusrutaceaetakingintoaccounthybridizationandlineagesorting
AT keremanemanjunathl sixnucleargenephylogenyofcitrusrutaceaetakingintoaccounthybridizationandlineagesorting
AT leerichardf sixnucleargenephylogenyofcitrusrutaceaetakingintoaccounthybridizationandlineagesorting
AT maureirabutlerivanj sixnucleargenephylogenyofcitrusrutaceaetakingintoaccounthybridizationandlineagesorting
AT roosemikeall sixnucleargenephylogenyofcitrusrutaceaetakingintoaccounthybridizationandlineagesorting