Cargando…
A mistletoe tale: postglacial invasion of Psittacanthus schiedeanus (Loranthaceae) to Mesoamerican cloud forests revealed by molecular data and species distribution modeling
BACKGROUND: Ecological adaptation to host taxa is thought to result in mistletoe speciation via race formation. However, historical and ecological factors could also contribute to explain genetic structuring particularly when mistletoe host races are distributed allopatrically. Using sequence data f...
Autores principales: | , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
BioMed Central
2016
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4830056/ https://www.ncbi.nlm.nih.gov/pubmed/27071983 http://dx.doi.org/10.1186/s12862-016-0648-6 |
_version_ | 1782426850020032512 |
---|---|
author | Ornelas, Juan Francisco Gándara, Etelvina Vásquez-Aguilar, Antonio Acini Ramírez-Barahona, Santiago Ortiz-Rodriguez, Andrés Ernesto González, Clementina Mejía Saules, María Teresa Ruiz-Sanchez, Eduardo |
author_facet | Ornelas, Juan Francisco Gándara, Etelvina Vásquez-Aguilar, Antonio Acini Ramírez-Barahona, Santiago Ortiz-Rodriguez, Andrés Ernesto González, Clementina Mejía Saules, María Teresa Ruiz-Sanchez, Eduardo |
author_sort | Ornelas, Juan Francisco |
collection | PubMed |
description | BACKGROUND: Ecological adaptation to host taxa is thought to result in mistletoe speciation via race formation. However, historical and ecological factors could also contribute to explain genetic structuring particularly when mistletoe host races are distributed allopatrically. Using sequence data from nuclear (ITS) and chloroplast (trnL-F) DNA, we investigate the genetic differentiation of 31 Psittacanthus schiedeanus (Loranthaceae) populations across the Mesoamerican species range. We conducted phylogenetic, population and spatial genetic analyses on 274 individuals of P. schiedeanus to gain insight of the evolutionary history of these populations. Species distribution modeling, isolation with migration and Bayesian inference methods were used to infer the evolutionary transition of mistletoe invasion, in which evolutionary scenarios were compared through posterior probabilities. RESULTS: Our analyses revealed shallow levels of population structure with three genetic groups present across the sample area. Nine haplotypes were identified after sequencing the trnL-F intergenic spacer. These haplotypes showed phylogeographic structure, with three groups with restricted gene flow corresponding to the distribution of individuals/populations separated by habitat (cloud forest localities from San Luis Potosí to northwestern Oaxaca and Chiapas, localities with xeric vegetation in central Oaxaca, and localities with tropical deciduous forests in Chiapas), with post-glacial population expansions and potentially corresponding to post-glacial invasion types. Similarly, 44 ITS ribotypes suggest phylogeographic structure, despite the fact that most frequent ribotypes are widespread indicating effective nuclear gene flow via pollen. Gene flow estimates, a significant genetic signal of demographic expansion, and range shifts under past climatic conditions predicted by species distribution modeling suggest post-glacial invasion of P. schiedeanus mistletoes to cloud forests. However, Approximate Bayesian Computation (ABC) analyses strongly supported a scenario of simultaneous divergence among the three groups isolated recently. CONCLUSIONS: Our results provide support for the predominant role of isolation and environmental factors in driving genetic differentiation of Mesoamerican parrot-flower mistletoes. The ABC results are consistent with a scenario of post-glacial mistletoe invasion, independent of host identity, and that habitat types recently isolated P. schiedeanus populations, accumulating slight phenotypic differences among genetic groups due to recent migration across habitats. Under this scenario, climatic fluctuations throughout the Pleistocene would have altered the distribution of suitable habitat for mistletoes throughout Mesoamerica leading to variation in population continuity and isolation. Our findings add to an understanding of the role of recent isolation and colonization in shaping cloud forest communities in the region. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (doi:10.1186/s12862-016-0648-6) contains supplementary material, which is available to authorized users. |
format | Online Article Text |
id | pubmed-4830056 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2016 |
publisher | BioMed Central |
record_format | MEDLINE/PubMed |
spelling | pubmed-48300562016-04-14 A mistletoe tale: postglacial invasion of Psittacanthus schiedeanus (Loranthaceae) to Mesoamerican cloud forests revealed by molecular data and species distribution modeling Ornelas, Juan Francisco Gándara, Etelvina Vásquez-Aguilar, Antonio Acini Ramírez-Barahona, Santiago Ortiz-Rodriguez, Andrés Ernesto González, Clementina Mejía Saules, María Teresa Ruiz-Sanchez, Eduardo BMC Evol Biol Research Article BACKGROUND: Ecological adaptation to host taxa is thought to result in mistletoe speciation via race formation. However, historical and ecological factors could also contribute to explain genetic structuring particularly when mistletoe host races are distributed allopatrically. Using sequence data from nuclear (ITS) and chloroplast (trnL-F) DNA, we investigate the genetic differentiation of 31 Psittacanthus schiedeanus (Loranthaceae) populations across the Mesoamerican species range. We conducted phylogenetic, population and spatial genetic analyses on 274 individuals of P. schiedeanus to gain insight of the evolutionary history of these populations. Species distribution modeling, isolation with migration and Bayesian inference methods were used to infer the evolutionary transition of mistletoe invasion, in which evolutionary scenarios were compared through posterior probabilities. RESULTS: Our analyses revealed shallow levels of population structure with three genetic groups present across the sample area. Nine haplotypes were identified after sequencing the trnL-F intergenic spacer. These haplotypes showed phylogeographic structure, with three groups with restricted gene flow corresponding to the distribution of individuals/populations separated by habitat (cloud forest localities from San Luis Potosí to northwestern Oaxaca and Chiapas, localities with xeric vegetation in central Oaxaca, and localities with tropical deciduous forests in Chiapas), with post-glacial population expansions and potentially corresponding to post-glacial invasion types. Similarly, 44 ITS ribotypes suggest phylogeographic structure, despite the fact that most frequent ribotypes are widespread indicating effective nuclear gene flow via pollen. Gene flow estimates, a significant genetic signal of demographic expansion, and range shifts under past climatic conditions predicted by species distribution modeling suggest post-glacial invasion of P. schiedeanus mistletoes to cloud forests. However, Approximate Bayesian Computation (ABC) analyses strongly supported a scenario of simultaneous divergence among the three groups isolated recently. CONCLUSIONS: Our results provide support for the predominant role of isolation and environmental factors in driving genetic differentiation of Mesoamerican parrot-flower mistletoes. The ABC results are consistent with a scenario of post-glacial mistletoe invasion, independent of host identity, and that habitat types recently isolated P. schiedeanus populations, accumulating slight phenotypic differences among genetic groups due to recent migration across habitats. Under this scenario, climatic fluctuations throughout the Pleistocene would have altered the distribution of suitable habitat for mistletoes throughout Mesoamerica leading to variation in population continuity and isolation. Our findings add to an understanding of the role of recent isolation and colonization in shaping cloud forest communities in the region. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (doi:10.1186/s12862-016-0648-6) contains supplementary material, which is available to authorized users. BioMed Central 2016-04-12 /pmc/articles/PMC4830056/ /pubmed/27071983 http://dx.doi.org/10.1186/s12862-016-0648-6 Text en © Ornelas et al. 2016 Open AccessThis article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated. |
spellingShingle | Research Article Ornelas, Juan Francisco Gándara, Etelvina Vásquez-Aguilar, Antonio Acini Ramírez-Barahona, Santiago Ortiz-Rodriguez, Andrés Ernesto González, Clementina Mejía Saules, María Teresa Ruiz-Sanchez, Eduardo A mistletoe tale: postglacial invasion of Psittacanthus schiedeanus (Loranthaceae) to Mesoamerican cloud forests revealed by molecular data and species distribution modeling |
title | A mistletoe tale: postglacial invasion of Psittacanthus schiedeanus (Loranthaceae) to Mesoamerican cloud forests revealed by molecular data and species distribution modeling |
title_full | A mistletoe tale: postglacial invasion of Psittacanthus schiedeanus (Loranthaceae) to Mesoamerican cloud forests revealed by molecular data and species distribution modeling |
title_fullStr | A mistletoe tale: postglacial invasion of Psittacanthus schiedeanus (Loranthaceae) to Mesoamerican cloud forests revealed by molecular data and species distribution modeling |
title_full_unstemmed | A mistletoe tale: postglacial invasion of Psittacanthus schiedeanus (Loranthaceae) to Mesoamerican cloud forests revealed by molecular data and species distribution modeling |
title_short | A mistletoe tale: postglacial invasion of Psittacanthus schiedeanus (Loranthaceae) to Mesoamerican cloud forests revealed by molecular data and species distribution modeling |
title_sort | mistletoe tale: postglacial invasion of psittacanthus schiedeanus (loranthaceae) to mesoamerican cloud forests revealed by molecular data and species distribution modeling |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4830056/ https://www.ncbi.nlm.nih.gov/pubmed/27071983 http://dx.doi.org/10.1186/s12862-016-0648-6 |
work_keys_str_mv | AT ornelasjuanfrancisco amistletoetalepostglacialinvasionofpsittacanthusschiedeanusloranthaceaetomesoamericancloudforestsrevealedbymoleculardataandspeciesdistributionmodeling AT gandaraetelvina amistletoetalepostglacialinvasionofpsittacanthusschiedeanusloranthaceaetomesoamericancloudforestsrevealedbymoleculardataandspeciesdistributionmodeling AT vasquezaguilarantonioacini amistletoetalepostglacialinvasionofpsittacanthusschiedeanusloranthaceaetomesoamericancloudforestsrevealedbymoleculardataandspeciesdistributionmodeling AT ramirezbarahonasantiago amistletoetalepostglacialinvasionofpsittacanthusschiedeanusloranthaceaetomesoamericancloudforestsrevealedbymoleculardataandspeciesdistributionmodeling AT ortizrodriguezandresernesto amistletoetalepostglacialinvasionofpsittacanthusschiedeanusloranthaceaetomesoamericancloudforestsrevealedbymoleculardataandspeciesdistributionmodeling AT gonzalezclementina amistletoetalepostglacialinvasionofpsittacanthusschiedeanusloranthaceaetomesoamericancloudforestsrevealedbymoleculardataandspeciesdistributionmodeling AT mejiasaulesmariateresa amistletoetalepostglacialinvasionofpsittacanthusschiedeanusloranthaceaetomesoamericancloudforestsrevealedbymoleculardataandspeciesdistributionmodeling AT ruizsanchezeduardo amistletoetalepostglacialinvasionofpsittacanthusschiedeanusloranthaceaetomesoamericancloudforestsrevealedbymoleculardataandspeciesdistributionmodeling AT ornelasjuanfrancisco mistletoetalepostglacialinvasionofpsittacanthusschiedeanusloranthaceaetomesoamericancloudforestsrevealedbymoleculardataandspeciesdistributionmodeling AT gandaraetelvina mistletoetalepostglacialinvasionofpsittacanthusschiedeanusloranthaceaetomesoamericancloudforestsrevealedbymoleculardataandspeciesdistributionmodeling AT vasquezaguilarantonioacini mistletoetalepostglacialinvasionofpsittacanthusschiedeanusloranthaceaetomesoamericancloudforestsrevealedbymoleculardataandspeciesdistributionmodeling AT ramirezbarahonasantiago mistletoetalepostglacialinvasionofpsittacanthusschiedeanusloranthaceaetomesoamericancloudforestsrevealedbymoleculardataandspeciesdistributionmodeling AT ortizrodriguezandresernesto mistletoetalepostglacialinvasionofpsittacanthusschiedeanusloranthaceaetomesoamericancloudforestsrevealedbymoleculardataandspeciesdistributionmodeling AT gonzalezclementina mistletoetalepostglacialinvasionofpsittacanthusschiedeanusloranthaceaetomesoamericancloudforestsrevealedbymoleculardataandspeciesdistributionmodeling AT mejiasaulesmariateresa mistletoetalepostglacialinvasionofpsittacanthusschiedeanusloranthaceaetomesoamericancloudforestsrevealedbymoleculardataandspeciesdistributionmodeling AT ruizsanchezeduardo mistletoetalepostglacialinvasionofpsittacanthusschiedeanusloranthaceaetomesoamericancloudforestsrevealedbymoleculardataandspeciesdistributionmodeling |