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  5. What drives diversification in a pantropical plant lineage with extraordinary capacity for long‐distance dispersal and colonization?

What drives diversification in a pantropical plant lineage with extraordinary capacity for long‐distance dispersal and colonization?

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Resource type
Journal article
Creator (person)
Larridon, Isabel
ORCIDORCID logo
Galán Díaz, Javier
ORCIDORCID logo
Bauters, Kenneth
Escudero, Marcial
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Date published
October 2, 2020
Abstract
Aim Colonization of new areas may entail shifts in diversification rates linked to biogeographical movement (dispersification), which may involve niche evolution if species were not exapted to new environments. Scleria (Cyperaceae) includes c. 250 species and has a pantropical distribution suggesting an extraordinary capacity for long‐distance dispersal and colonization. We investigate patterns of diversification in Scleria, and whether they are coupled with colonization events, climate niche shifts or both. Location Tropics and subtropics. Taxon Nutrushes Scleria (Cyperaceae). Methods We used molecular data from three DNA regions sequenced for 278 accessions representing 140 Scleria taxa (53% of species) to develop a chronogram, model ancestral ranges and measure rates of diversification. Integrating data from 12,978 digitized and georeferenced herbarium records, we investigated niche evolution. Results High dispersal rates in Scleria, a genus with multiple dispersal syndromes, make reconstruction of ancestral ranges at deep nodes in the phylogeny highly equivocal. Main dispersal and colonization events involve movements from South to Central America (c. 19), from Africa to Madagascar (c. 12), from Asia to Oceania (c. 7), from Africa to South America (c. 7) and Central America to South America (c. 6). The two main shifts in diversification rates happened during the warm period of the Miocene. Main conclusions Dispersification from South America to Africa without climate niche shift seems to explain the diversification shift in section Hypoporum implying that species were exapted. Shifts in climate niche evolution predate the second shift in diversification rates suggesting lineages were exapted prior to biogeographical movements. Within subgenus Scleria, colonizations of Asia and Madagascar by sections Elatae and Abortivae, respectively, are coupled with niche shifts suggesting that these colonizations involved climate niche adaptation.
Funder
Funder nameAwards
Ministerio de Ciencia e Innovación
PGC2018‐099608‐B‐I00
Journal title
Journal of Biogeography
Publisher
Wiley
ISSN
0305-0270
eISSN
1365-2699
Official URL
http://dx.doi.org/10.1111/jbi.13982
Rights statement
In Copyright
Licence
https://creativecommons.org/licenses/by/4.0/
DOI
10.1111/jbi.13982
Keywords
ancestral range estimation
biogeography
Cyperaceae
dispersification
niche evolution
nutrushes
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