Flight over the Proto-Caribbean seaway: Phylogeny and macroevolution of Neotropical Anaeini leafwing butterflies

Our understanding of the origin and evolution of the astonishing Neotropical biodiversity remains somewhat limited. In particular, decoupling the respective impacts of biotic and abiotic factors on the macroevolution of clades is paramount to understand biodiversity assemblage in this region. We present the first comprehensive molecular phylogeny for the Neotropical Anaeini leafwing butterflies (Nymphalidae, Charaxinae)and, applying likelihood-based methods, we test the impact of major abiotic (Andean orogeny, Central American highland orogeny, Proto-Caribbean seaway closure, Quaternary glaciations)and biotic (host plant association)factors on their macroevolution. We infer a robust phylogenetic hypothesis for the tribe despite moderate support in some derived clades. Our phylogenetic inference recovers the genus Polygrapha Staudinger, [1887]as polyphyletic, rendering the genera Fountainea Rydon, 1971 and Memphis Hübner, [1819]paraphyletic. Consequently, we transfer Polygrapha tyrianthina (Salvin & Godman, 1868)comb. nov. to Fountainea and Polygrapha xenocrates (Westwood, 1850)comb. nov. to Memphis. We infer an origin of the group in the late Eocene ca. 40 million years ago in Central American lowlands which at the time were separated from South America by the Proto-Caribbean seaway. The biogeographical history of the group is very dynamic, with several oversea colonization events from Central America into the Chocó and Andean regions during intense stages of Andean orogeny. These events coincide with the emergence of an archipelagic setting between Central America and northern South America in the mid-Miocene that likely facilitated dispersal across the now-vanished Proto-Caribbean seaway. The Amazonian region also played a central role in the diversification of the Anaeini, acting both as a museum and a cradle of diversity. We recover a diversification rate shift in the Miocene within the species-rich genus Memphis. State speciation and extinction models recover a significant relationship between this rate shift and host plant association, indicating a positive role on speciation rates of a switch between Malpighiales and new plant orders. We find less support for a role of abiotic factors including the progressive Andean orogeny, Proto-Caribbean seaway closure and Quaternary glaciations. Miocene host plant shifts possibly acted in concert with abiotic and/or biotic factors to shape the diversification of Anaeini butterflies.

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Main Authors: Toussaint, Emmanuel F. A., Dias, Fernando M. S., Mielke, Olaf H. H., Casagrande, Mirna M., Sañudo Restrepo, Claudia Patricia, Lam, Athena, Morinière, Jérôme, Balke, Michael, Vila, Roger
Other Authors: Ministerio de Economía y Competitividad (España)
Format: artículo biblioteca
Published: Elsevier 2019-08
Subjects:Andes and Central American highland orogenies, Butterfly evolution, Eocene paleoenvironments, Host plant shifts, Nymphalidae phylogenetics, Panamanian archipelago,
Online Access:http://hdl.handle.net/10261/207069
http://dx.doi.org/10.13039/501100003593
http://dx.doi.org/10.13039/501100003329
http://dx.doi.org/10.13039/501100000780
http://dx.doi.org/10.13039/501100002322
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record_format koha
institution IBE ES
collection DSpace
country España
countrycode ES
component Bibliográfico
access En linea
databasecode dig-ibe-es
tag biblioteca
region Europa del Sur
libraryname Biblioteca del IBE España
topic Andes and Central American highland orogenies
Butterfly evolution
Eocene paleoenvironments
Host plant shifts
Nymphalidae phylogenetics
Panamanian archipelago
Andes and Central American highland orogenies
Butterfly evolution
Eocene paleoenvironments
Host plant shifts
Nymphalidae phylogenetics
Panamanian archipelago
spellingShingle Andes and Central American highland orogenies
Butterfly evolution
Eocene paleoenvironments
Host plant shifts
Nymphalidae phylogenetics
Panamanian archipelago
Andes and Central American highland orogenies
Butterfly evolution
Eocene paleoenvironments
Host plant shifts
Nymphalidae phylogenetics
Panamanian archipelago
Toussaint, Emmanuel F. A.
Dias, Fernando M. S.
Mielke, Olaf H. H.
Casagrande, Mirna M.
Sañudo Restrepo, Claudia Patricia
Lam, Athena
Morinière, Jérôme
Balke, Michael
Vila, Roger
Flight over the Proto-Caribbean seaway: Phylogeny and macroevolution of Neotropical Anaeini leafwing butterflies
description Our understanding of the origin and evolution of the astonishing Neotropical biodiversity remains somewhat limited. In particular, decoupling the respective impacts of biotic and abiotic factors on the macroevolution of clades is paramount to understand biodiversity assemblage in this region. We present the first comprehensive molecular phylogeny for the Neotropical Anaeini leafwing butterflies (Nymphalidae, Charaxinae)and, applying likelihood-based methods, we test the impact of major abiotic (Andean orogeny, Central American highland orogeny, Proto-Caribbean seaway closure, Quaternary glaciations)and biotic (host plant association)factors on their macroevolution. We infer a robust phylogenetic hypothesis for the tribe despite moderate support in some derived clades. Our phylogenetic inference recovers the genus Polygrapha Staudinger, [1887]as polyphyletic, rendering the genera Fountainea Rydon, 1971 and Memphis Hübner, [1819]paraphyletic. Consequently, we transfer Polygrapha tyrianthina (Salvin & Godman, 1868)comb. nov. to Fountainea and Polygrapha xenocrates (Westwood, 1850)comb. nov. to Memphis. We infer an origin of the group in the late Eocene ca. 40 million years ago in Central American lowlands which at the time were separated from South America by the Proto-Caribbean seaway. The biogeographical history of the group is very dynamic, with several oversea colonization events from Central America into the Chocó and Andean regions during intense stages of Andean orogeny. These events coincide with the emergence of an archipelagic setting between Central America and northern South America in the mid-Miocene that likely facilitated dispersal across the now-vanished Proto-Caribbean seaway. The Amazonian region also played a central role in the diversification of the Anaeini, acting both as a museum and a cradle of diversity. We recover a diversification rate shift in the Miocene within the species-rich genus Memphis. State speciation and extinction models recover a significant relationship between this rate shift and host plant association, indicating a positive role on speciation rates of a switch between Malpighiales and new plant orders. We find less support for a role of abiotic factors including the progressive Andean orogeny, Proto-Caribbean seaway closure and Quaternary glaciations. Miocene host plant shifts possibly acted in concert with abiotic and/or biotic factors to shape the diversification of Anaeini butterflies.
author2 Ministerio de Economía y Competitividad (España)
author_facet Ministerio de Economía y Competitividad (España)
Toussaint, Emmanuel F. A.
Dias, Fernando M. S.
Mielke, Olaf H. H.
Casagrande, Mirna M.
Sañudo Restrepo, Claudia Patricia
Lam, Athena
Morinière, Jérôme
Balke, Michael
Vila, Roger
format artículo
topic_facet Andes and Central American highland orogenies
Butterfly evolution
Eocene paleoenvironments
Host plant shifts
Nymphalidae phylogenetics
Panamanian archipelago
author Toussaint, Emmanuel F. A.
Dias, Fernando M. S.
Mielke, Olaf H. H.
Casagrande, Mirna M.
Sañudo Restrepo, Claudia Patricia
Lam, Athena
Morinière, Jérôme
Balke, Michael
Vila, Roger
author_sort Toussaint, Emmanuel F. A.
title Flight over the Proto-Caribbean seaway: Phylogeny and macroevolution of Neotropical Anaeini leafwing butterflies
title_short Flight over the Proto-Caribbean seaway: Phylogeny and macroevolution of Neotropical Anaeini leafwing butterflies
title_full Flight over the Proto-Caribbean seaway: Phylogeny and macroevolution of Neotropical Anaeini leafwing butterflies
title_fullStr Flight over the Proto-Caribbean seaway: Phylogeny and macroevolution of Neotropical Anaeini leafwing butterflies
title_full_unstemmed Flight over the Proto-Caribbean seaway: Phylogeny and macroevolution of Neotropical Anaeini leafwing butterflies
title_sort flight over the proto-caribbean seaway: phylogeny and macroevolution of neotropical anaeini leafwing butterflies
publisher Elsevier
publishDate 2019-08
url http://hdl.handle.net/10261/207069
http://dx.doi.org/10.13039/501100003593
http://dx.doi.org/10.13039/501100003329
http://dx.doi.org/10.13039/501100000780
http://dx.doi.org/10.13039/501100002322
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spelling dig-ibe-es-10261-2070692022-09-28T09:08:20Z Flight over the Proto-Caribbean seaway: Phylogeny and macroevolution of Neotropical Anaeini leafwing butterflies Toussaint, Emmanuel F. A. Dias, Fernando M. S. Mielke, Olaf H. H. Casagrande, Mirna M. Sañudo Restrepo, Claudia Patricia Lam, Athena Morinière, Jérôme Balke, Michael Vila, Roger Ministerio de Economía y Competitividad (España) European Commission Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (Brasil) Conselho Nacional de Desenvolvimento Científico e Tecnológico (Brasil) Andes and Central American highland orogenies Butterfly evolution Eocene paleoenvironments Host plant shifts Nymphalidae phylogenetics Panamanian archipelago Our understanding of the origin and evolution of the astonishing Neotropical biodiversity remains somewhat limited. In particular, decoupling the respective impacts of biotic and abiotic factors on the macroevolution of clades is paramount to understand biodiversity assemblage in this region. We present the first comprehensive molecular phylogeny for the Neotropical Anaeini leafwing butterflies (Nymphalidae, Charaxinae)and, applying likelihood-based methods, we test the impact of major abiotic (Andean orogeny, Central American highland orogeny, Proto-Caribbean seaway closure, Quaternary glaciations)and biotic (host plant association)factors on their macroevolution. We infer a robust phylogenetic hypothesis for the tribe despite moderate support in some derived clades. Our phylogenetic inference recovers the genus Polygrapha Staudinger, [1887]as polyphyletic, rendering the genera Fountainea Rydon, 1971 and Memphis Hübner, [1819]paraphyletic. Consequently, we transfer Polygrapha tyrianthina (Salvin & Godman, 1868)comb. nov. to Fountainea and Polygrapha xenocrates (Westwood, 1850)comb. nov. to Memphis. We infer an origin of the group in the late Eocene ca. 40 million years ago in Central American lowlands which at the time were separated from South America by the Proto-Caribbean seaway. The biogeographical history of the group is very dynamic, with several oversea colonization events from Central America into the Chocó and Andean regions during intense stages of Andean orogeny. These events coincide with the emergence of an archipelagic setting between Central America and northern South America in the mid-Miocene that likely facilitated dispersal across the now-vanished Proto-Caribbean seaway. The Amazonian region also played a central role in the diversification of the Anaeini, acting both as a museum and a cradle of diversity. We recover a diversification rate shift in the Miocene within the species-rich genus Memphis. State speciation and extinction models recover a significant relationship between this rate shift and host plant association, indicating a positive role on speciation rates of a switch between Malpighiales and new plant orders. We find less support for a role of abiotic factors including the progressive Andean orogeny, Proto-Caribbean seaway closure and Quaternary glaciations. Miocene host plant shifts possibly acted in concert with abiotic and/or biotic factors to shape the diversification of Anaeini butterflies. This work was supported by grant BA2152/20-1 (DFG), and by the grants PR2015-00305(MINECO) and CGL2016-76322-P (AEI/FEDER, UE) to R.V. FMSD, OHHM and MMC thank Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES, Edital 15/2014 CAPES/EMBRAPA) and Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq, 141143/2009-6, 150542/2013-5, 308247/2013-2, 304639/2014-1), for financial support. 2020-04-08T12:59:55Z 2020-04-08T12:59:55Z 2019-08 2020-04-08T12:59:55Z artículo http://purl.org/coar/resource_type/c_6501 doi: 10.1016/j.ympev.2019.04.020 issn: 1095-9513 Molecular Phylogenetics and Evolution 137: 86-103 (2019) http://hdl.handle.net/10261/207069 10.1016/j.ympev.2019.04.020 http://dx.doi.org/10.13039/501100003593 http://dx.doi.org/10.13039/501100003329 http://dx.doi.org/10.13039/501100000780 http://dx.doi.org/10.13039/501100002322 Publisher's version http://doi.org/10.1016/j.ympev.2019.04.020 Sí open Elsevier