Seasonal droughts during the Miocene drove the evolution of Capparaceae towards Neotropical seasonally dry forests

Introduction: Neotropical seasonally dry forest (NSDF) climatic constraintsincreased endemism, and phylogenetic niche conservatism in species that are restricted to thisbiome. NSDF have a large number of endemic Capparaceae taxa, but it is unknown ifphylogenetic niche conservatism has played a role...

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Autores: Mercado-Gómez, Jorge D., Morales-Puentes, María E., Gonzalez, Mailyn A., Velasco, Julián A.
Tipo de recurso: artículo
Estado:Versión publicada
Fecha de publicación:2022
País:Costa Rica
Institución:Universidad de Costa Rica
Repositorio:Portal de Revistas UCR
Idioma:inglés
OAI Identifier:oai:portal.ucr.ac.cr:article/47504
Acceso en línea:https://revistas.ucr.ac.cr/index.php/rbt/article/view/47504
Access Level:acceso abierto
Palabra clave:climate;
comparative methods;
Miocene;
niche;
phylogeny
clima;
métodos comparativos;
mioceno;
nicho;
filogenia
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oai_identifier_str oai:portal.ucr.ac.cr:article/47504
network_acronym_str CR
network_name_str Costa Rica
repository_id_str
dc.title.none.fl_str_mv Seasonal droughts during the Miocene drove the evolution of Capparaceae towards Neotropical seasonally dry forests
Las sequías estacionales del Mioceno impulsaron la evolución de Capparaceae hacia los bosques neotropicales estacionalmente secos
title Seasonal droughts during the Miocene drove the evolution of Capparaceae towards Neotropical seasonally dry forests
spellingShingle Seasonal droughts during the Miocene drove the evolution of Capparaceae towards Neotropical seasonally dry forests
Mercado-Gómez, Jorge D.
climate;
comparative methods;
Miocene;
niche;
phylogeny
clima;
métodos comparativos;
mioceno;
nicho;
filogenia
title_short Seasonal droughts during the Miocene drove the evolution of Capparaceae towards Neotropical seasonally dry forests
title_full Seasonal droughts during the Miocene drove the evolution of Capparaceae towards Neotropical seasonally dry forests
title_fullStr Seasonal droughts during the Miocene drove the evolution of Capparaceae towards Neotropical seasonally dry forests
title_full_unstemmed Seasonal droughts during the Miocene drove the evolution of Capparaceae towards Neotropical seasonally dry forests
title_sort Seasonal droughts during the Miocene drove the evolution of Capparaceae towards Neotropical seasonally dry forests
dc.creator.none.fl_str_mv Mercado-Gómez, Jorge D.
Morales-Puentes, María E.
Gonzalez, Mailyn A.
Velasco, Julián A.
author Mercado-Gómez, Jorge D.
author_facet Mercado-Gómez, Jorge D.
Morales-Puentes, María E.
Gonzalez, Mailyn A.
Velasco, Julián A.
author_role author
author2 Morales-Puentes, María E.
Gonzalez, Mailyn A.
Velasco, Julián A.
author2_role author
author
author
dc.subject.none.fl_str_mv climate;
comparative methods;
Miocene;
niche;
phylogeny
clima;
métodos comparativos;
mioceno;
nicho;
filogenia
topic climate;
comparative methods;
Miocene;
niche;
phylogeny
clima;
métodos comparativos;
mioceno;
nicho;
filogenia
description Introduction: Neotropical seasonally dry forest (NSDF) climatic constraintsincreased endemism, and phylogenetic niche conservatism in species that are restricted to thisbiome. NSDF have a large number of endemic Capparaceae taxa, but it is unknown ifphylogenetic niche conservatism has played a role in this pattern. Objective: We carried out anevolutionary analysis of the climatic niche of neotropical species of Capparaceae to identifywhether the climatic constraints of NSDF have played a major role throughout the family’sevolutionary history. Methods: Using three chloroplastic (ndhF, matK, rbcL) and one ribosomal(rsp3) DNA sequences, we proposed a date phylogeny to reconstruct the evolutionary climaticniche dynamics of 24 Neotropical species of Capparaceae. We tested the relationship betweenniche dissimilarity and phylogenetic distance between species using the Mantel test. Likewise,we used a set of phylogenetic comparative methods (PGLS) on the phylogeny of Capparaceae toreconstruct the main evolutionary historic events in their niche. Results: Capparaceae originatedin humid regions and subsequently, convergent evolution occurred towards humid and dry forestduring the aridification phases of the Middle Miocene (16-11 Mya). However, adaptationtowards drought stress was reflected only during the precipitation of the coldest quarter, wherewe found phylogenetic signal (Pagel ) for gradual evolution and, therefore, evidence ofphylogenetic niche conservatism. We found convergent species-specific adaptations to bothdrought stress and rainfall during the Miocene, suggesting a non-phylogenetic structure in mostclimatic variables. Conclusions: Our study shows how the Miocene climate may haveinfluenced the Capparaceae speciation toward driest environments. Further, highlights thecomplexity of climatic niche dynamics in this family, and therefore more detailed analyses arenecessary in order to better understand the NSDF climatic constrictions affected the evolution ofCapparaceae.
publishDate 2022
dc.date.none.fl_str_mv 2022-03-02
dc.type.none.fl_str_mv info:eu-repo/semantics/publishedVersion
Article
artículo original
http://purl.org/coar/resource_type/c_2df8fbb1
info:eu-repo/semantics/article
format article
status_str publishedVersion
dc.identifier.none.fl_str_mv https://revistas.ucr.ac.cr/index.php/rbt/article/view/47504
10.15517/rev.biol.trop..v70i1.47504
url https://revistas.ucr.ac.cr/index.php/rbt/article/view/47504
identifier_str_mv 10.15517/rev.biol.trop..v70i1.47504
dc.language.none.fl_str_mv eng
language eng
dc.relation.none.fl_str_mv https://revistas.ucr.ac.cr/index.php/rbt/article/view/47504/50269
https://revistas.ucr.ac.cr/index.php/rbt/article/view/47504/50270
https://revistas.ucr.ac.cr/index.php/rbt/article/view/47504/50271
dc.rights.none.fl_str_mv Derechos de autor 2022 Revista de Biología Tropical
acceso abierto
http://purl.org/coar/access_right/c_abf2
info:eu-repo/semantics/openAccess
rights_invalid_str_mv Derechos de autor 2022 Revista de Biología Tropical
acceso abierto
http://purl.org/coar/access_right/c_abf2
eu_rights_str_mv openAccess
dc.format.none.fl_str_mv application/pdf
text/html
application/pdf
dc.publisher.none.fl_str_mv Universidad de Costa Rica
publisher.none.fl_str_mv Universidad de Costa Rica
dc.source.none.fl_str_mv Revista de Biología Tropical; Vol. 70 No. 1 (2022): Revista de Biología Tropical (Rev. Biol. Trop.): Continuous publication, 01 January - 31 December 2022; 132–148
Revista de Biología Tropical; Vol. 70 Núm. 1 (2022): Revista de Biología Tropical (Rev. Biol. Trop.): Publicación continua, Enero - Diciembre 2022; 132–148
Revista Biología Tropical; Vol. 70 N.º 1 (2022): Revista de Biología Tropical (Rev. Biol. Trop.): Publicación continua, Enero - Diciembre 2022; 132–148
2215-2075
0034-7744
10.15517/rev.biol.trop..v70i1.2022
reponame:Portal de Revistas UCR
instname:Universidad de Costa Rica
instacron:UCR
instname_str Universidad de Costa Rica
instacron_str UCR
institution UCR
reponame_str Portal de Revistas UCR
collection Portal de Revistas UCR
repository.name.fl_str_mv Portal de Revistas UCR - Universidad de Costa Rica
repository.mail.fl_str_mv jorge.polanco@ucr.ac.cr
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spelling Seasonal droughts during the Miocene drove the evolution of Capparaceae towards Neotropical seasonally dry forestsLas sequías estacionales del Mioceno impulsaron la evolución de Capparaceae hacia los bosques neotropicales estacionalmente secosMercado-Gómez, Jorge D.Morales-Puentes, María E.Gonzalez, Mailyn A.Velasco, Julián A.climate;comparative methods;Miocene;niche;phylogenyclima;métodos comparativos;mioceno;nicho;filogeniaIntroduction: Neotropical seasonally dry forest (NSDF) climatic constraintsincreased endemism, and phylogenetic niche conservatism in species that are restricted to thisbiome. NSDF have a large number of endemic Capparaceae taxa, but it is unknown ifphylogenetic niche conservatism has played a role in this pattern. Objective: We carried out anevolutionary analysis of the climatic niche of neotropical species of Capparaceae to identifywhether the climatic constraints of NSDF have played a major role throughout the family’sevolutionary history. Methods: Using three chloroplastic (ndhF, matK, rbcL) and one ribosomal(rsp3) DNA sequences, we proposed a date phylogeny to reconstruct the evolutionary climaticniche dynamics of 24 Neotropical species of Capparaceae. We tested the relationship betweenniche dissimilarity and phylogenetic distance between species using the Mantel test. Likewise,we used a set of phylogenetic comparative methods (PGLS) on the phylogeny of Capparaceae toreconstruct the main evolutionary historic events in their niche. Results: Capparaceae originatedin humid regions and subsequently, convergent evolution occurred towards humid and dry forestduring the aridification phases of the Middle Miocene (16-11 Mya). However, adaptationtowards drought stress was reflected only during the precipitation of the coldest quarter, wherewe found phylogenetic signal (Pagel ) for gradual evolution and, therefore, evidence ofphylogenetic niche conservatism. We found convergent species-specific adaptations to bothdrought stress and rainfall during the Miocene, suggesting a non-phylogenetic structure in mostclimatic variables. Conclusions: Our study shows how the Miocene climate may haveinfluenced the Capparaceae speciation toward driest environments. Further, highlights thecomplexity of climatic niche dynamics in this family, and therefore more detailed analyses arenecessary in order to better understand the NSDF climatic constrictions affected the evolution ofCapparaceae.Introducción: Las limitaciones climáticas del bosque neotropical estacionalmente seco (NSDF) produjeron endemismo y conservadurismo filogenético del nicho en especies restringidas a este bosque. En las Caparáceas neotropicales se ha encontrado endemismo en los NSDF, pero se desconoce si el conservadurismo de nicho filogenético ha influido en su evolución. Objetivos: Se llevó a cabo un análisis evolutivo del nicho climático de las especies neotropicales de Capparaceae para evaluar si las limitacionesclimáticas del bosque neotropical estacionalmente seco (NSDF) han jugado un papel importantea lo largo de la historia evolutiva de la familia. Métodos: Usando tres secuencias de ADNcloroplastico (ndhF, matK, rbcL) y una ribosomal (rsp3) se propuso una filogenia datada parareconstruir la dinámica evolutiva del nicho climático de 24 especies Neotropicales deCapparaceae. Utilizando la prueba de Mantel, se realizaron análisis para establecer si haydiferencia de nicho y la distancia filogenética entre especies. Asimismo, se emplearon unconjunto de métodos comparativos filogenéticos sobre la filogenia de la familia para reconstruirlos principales eventos históricos evolutivos en su nicho. Resultados: Capparaceae se originó enregiones húmedas y posteriormente se dio una evolución convergente hacia bosque húmedo yseco durante las fases de aridificación del Mioceno Medio (16-11 Ma). Sin embargo, laadaptación al estrés por sequía se reflejó solo en la precipitación del cuarto más frío del año,donde se evidencio señal filogenética, evolución gradual y, por lo tanto, evidencia deconservadurismo de nicho filogenético. También se hallaron especies con adaptacionesconvergentes específicas tanto al estrés por sequía como a las lluvias durante el Mioceno,sugiriendo la carencia de estructura filogenética en la mayoría de las variables climáticas.Conclusiones: Este estudio muestra cómo el clima del Mioceno pudo haber influenciado laespeciación de Capparaceae hacia ambientes mas secos. Además, la compleja dinámica del nichoclimático en esta familia y, por lo tanto, la necesidad de realizar análisis más detallados paracomprender mejor como las constricciones climáticas del NSDF afectaron la evolución deCapparaceae.  Universidad de Costa Rica2022-03-02info:eu-repo/semantics/publishedVersionArticleartículo originalhttp://purl.org/coar/resource_type/c_2df8fbb1info:eu-repo/semantics/articleapplication/pdftext/htmlapplication/pdfhttps://revistas.ucr.ac.cr/index.php/rbt/article/view/4750410.15517/rev.biol.trop..v70i1.47504Revista de Biología Tropical; Vol. 70 No. 1 (2022): Revista de Biología Tropical (Rev. Biol. Trop.): Continuous publication, 01 January - 31 December 2022; 132–148Revista de Biología Tropical; Vol. 70 Núm. 1 (2022): Revista de Biología Tropical (Rev. Biol. Trop.): Publicación continua, Enero - Diciembre 2022; 132–148Revista Biología Tropical; Vol. 70 N.º 1 (2022): Revista de Biología Tropical (Rev. Biol. Trop.): Publicación continua, Enero - Diciembre 2022; 132–1482215-20750034-774410.15517/rev.biol.trop..v70i1.2022reponame:Portal de Revistas UCRinstname:Universidad de Costa Ricainstacron:UCRenghttps://revistas.ucr.ac.cr/index.php/rbt/article/view/47504/50269https://revistas.ucr.ac.cr/index.php/rbt/article/view/47504/50270https://revistas.ucr.ac.cr/index.php/rbt/article/view/47504/50271Derechos de autor 2022 Revista de Biología Tropicalacceso abiertohttp://purl.org/coar/access_right/c_abf2info:eu-repo/semantics/openAccess2022-10-17T15:42:01Zoai:portal.ucr.ac.cr:article/47504Portal de revistashttps://revistas.ucr.ac.cr/Universidadhttp://www.ucr.ac.crhttps://revistas.ucr.ac.cr/index.php/index/oaijorge.polanco@ucr.ac.crCosta RicaNo aplicaNo aplicaNo aplicaopendoar:2025-08-13T10:25:44.695Portal de Revistas UCR - Universidad de Costa Ricafalse
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