Rapid in-situ diversification rates in Rhamnaceae explain the parallel evolution of high diversity in temperate biomes from global to local scales
Tian, Q.; Stull, G. W.; Kellermann, J.; Medan, D.; Nge, F. J.; Liu, S.; Kates, H. R.; Soltis, D. E.; Soltis, P. S.; Guralnick, R. P.; Folk, R. A.; Onstein, R. E.; Yi, T.-s.
Show abstract
O_LIThe macroevolutionary processes that have shaped biodiversity across the temperate realm remain poorly understood and may have resulted from evolutionary dynamics related to diversification rates, dispersal rates, and colonization times, closely coupled with Cenozoic climate change. C_LIO_LIWe integrated phylogenomic, environmental ordination, and macroevolutionary analyses for the cosmopolitan angiosperm family Rhamnaceae to disentangle the evolutionary processes that have contributed to high species diversity within and across temperate biomes. C_LIO_LIOur results show independent colonization of environmentally similar but geographically separated temperate regions mainly during the Oligocene, consistent with the global expansion of temperate biomes. High global, regional, and local temperate diversity was the result of high in-situ diversification rates, rather than high immigration rates or accumulation time, except for Southern China, which was colonized much earlier than other regions. The relatively common lineage dispersals out of temperate hotspots highlights strong source-sink dynamics across the cosmopolitan distribution of Rhamnaceae. C_LIO_LIThe proliferation of temperate environments since the Oligocene may have provided the ecological opportunity for rapid in-situ diversification of Rhamnaceae across the temperate realm. Our study illustrates the importance of high in-situ diversification rates for the establishment of modern temperate biomes and biodiversity hotspots across spatial scales. C_LI
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- In-situ diversification and regional attributes shape asymmetric diversity of Miliusa (Annonaceae) in tropical Asia. 95%
- Elevational Range Sizes of Woody plants Increase with Climate Variability in the Tropical Andes 94%
- A passage through India: the biotic ferry model supports the build-up of Indo-Australian biodiversity of an ancient soil arthropod clade 92%
Similar papers in this journal
Similar papers in this journal
- Spatiotemporal diversification of forest understorey species reveals the existence of multiple Pleistocene forest refugia in Central Europe 93%
- Species-specific responses to paleoclimatic changes and landscape barriers drive contrasting phylogeography of co-distributed lemur species in northeastern Madagascar 93%
- How ancient forest fragmentation and riparian connectivity generate high levels of genetic diversity in a micro-endemic Malagasy tree 92%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.