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Data from: Temperate radiations and dying embers of a tropical past: the diversification of Viburnum

Spriggs, Elizabeth L.;Clement, Wendy L.;Sweeney, Patrick W.;Madriñán, Santiago;Edwards, Erika J.;Donoghue, Michael J.

Description

We used a near-complete phylogeny for the angiosperm clade Viburnum to assess lineage diversification rates, and to examine possible morphological and ecological factors driving radiations. Maximum-likelihood and Bayesian approaches identified shifts in diversification rate and possible links to character evolution. We inferred the ancestral environment for Viburnum and changes in diversification dynamics associated with subsequent biome shifts. Viburnum probably diversified in tropical forests of Southeast Asia in the Eocene, with three subsequent radiations in temperate clades during the Miocene. Four traits (purple fruits, extrafloral nectaries, bud scales and toothed leaves) were statistically associated with higher rates of diversification. However, we argue that these traits are unlikely to be driving diversification directly. Instead, two radiations were associated with the occupation of mountainous regions and a third with repeated shifts between colder and warmer temperate forests. Early-branching depauperate lineages imply that the rare lowland tropical species are ‘dying embers’ of once more diverse lineages; net diversification rates in Viburnum likely decreased in these tropical environments after the Oligocene. We suggest that ‘taxon pulse’ dynamics might characterize other temperate plant lineages.

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Mentions (0)

Metrics

Dataset Index

0.8

FAIR Score

77%

Citations

1

Mentions

0

Metrics Over Time

Publication Details

DOI

Publisher

Dryad

License

Creative Commons Zero v1.0 Universal

Assigned Domain

Subfield

Pathology and Forensic Medicine

Field

Medicine

Domain

Health Sciences

Confidence Score

99%

Source

Open Alex

Keywords

extinction ratespeciation ratetaxon pulseTropical forestsViburnumbiome shift

Normalization Factors

FT

57.69

CTw

1.00

MTw

1.00