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  5. A tale of worldwide success: Behind the scenes of Carex (Cyperaceae) biogeography and diversification.

A tale of worldwide success: Behind the scenes of Carex (Cyperaceae) biogeography and diversification.

Resource type
Journal article
Creator (person)
Martín‐Bravo, Santiago
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Jiménez‐Mejías, Pedro
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Villaverde, Tamara
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Escudero, Marcial
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Hahn, Marlene
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Spalink, Daniel
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Roalson, Eric H.
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Hipp, Andrew L.
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Benítez‐Benítez, Carmen
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Bruederle, Leo P.
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Fitzek, Elisabeth
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Ford, Bruce A.
Ford, Kerry A.
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Garner, Mira
Gebauer, Sebastian
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Hoffmann, Matthias H.
Jin, Xiao‐Feng
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Larridon, Isabel
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Léveillé‐Bourret, Étienne
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Lu, Yi‐Fei
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Luceño, Modesto
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Maguilla, Enrique
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Márquez‐Corro, Jose Ignacio
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Míguez, Mónica
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Naczi, Robert
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Reznicek, Anton
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Starr, Julian R.
Date published
November 7, 2019
Abstract
The megadiverse genus Carex (c. 2000 species, Cyperaceae) has a nearly cosmopolitan distribution, displaying an inverted latitudinal richness gradient with higher species diversity in cold-temperate areas of the Northern Hemisphere. Despite great expansion in our knowledge of the phylogenetic history of the genus and many molecular studies focusing on the biogeography of particular groups during the last few decades, a global analysis of Carex biogeography and diversification is still lacking. For this purpose, we built the hitherto most comprehensive Carex-dated phylogeny based on three markers (ETS–ITS–matK), using a previous phylogenomic Hyb-Seq framework, and a sampling of two-thirds of its species and all recognized sections. Ancestral area reconstruction, biogeographic stochastic mapping, and diversification rate analyses were conducted to elucidate macroevolutionary biogeographic and diversification patterns. Our results reveal that Carex originated in the late Eocene in E Asia, where it probably remained until the synchronous diversification of its main subgeneric lineages during the late Oligocene. E Asia is supported as the cradle of Carex diversification, as well as a “museum” of extant species diversity. Subsequent “out-of-Asia” colonization patterns feature multiple asymmetric dispersals clustered toward present times among the Northern Hemisphere regions, with major regions acting both as source and sink (especially Asia and North America), as well as several independent colonization events of the Southern Hemisphere. We detected 13 notable diversification rate shifts during the last 10 My, including remarkable radiations in North America and New Zealand, which occurred concurrently with the late Neogene global cooling, which suggests that diversification involved the colonization of new areas and expansion into novel areas of niche space.
Creator (organisation)
the Global Carex Group
Funder
Funder nameAwards
National Science Foundation, United States
#1256033 - #1255901
Ministerio de Economía y Competitividad, Spain
Project CGL2016–77401-P
Smithsonian Institution, United States
Postdoctoral Fellowship program
National Institute of Food and Agriculture, United States
McIntire Stennis project 1018692
Universidad Pablo de Olavide, Spain
PP16/12-APP
Journal title
Journal of Systematics and Evolution
Volume
57
Issue
6
Publisher
Wiley
Place of publication
US
ISSN
1674-4918
eISSN
1759-6831
Date accepted
October 31, 2019
Official URL
https://doi.org/10.1111/jse.12549
Rights statement
In Copyright
DOI
10.1111/jse.12549
Keywords
Ancestral area reconstruction
Diversification rates
Boreo-temperate
Phylogeny
Biogeographic stochastic mapping
Hyperdiverse
Dispersal
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