Palaeo-precipitation is a major determinant of palm species richness patterns across Madagascar: a tropical biodiversity hotspot.
Resource type
Journal article
Date published
April 22, 2013
Abstract
The distribution of rainforest in many regions across the Earth was strongly affected by Pleistocene ice ages. However, the extent to which these dynamics are still important for modern-day biodiversity patterns within tropical biodiversity hotspots has not been assessed. We employ a comprehensive dataset of Madagascan palms (Arecaceae) and climate reconstructions from the last glacial maximum (LGM; 21 000 years ago) to assess the relative role of modern environment and LGM climate in explaining geographical species richness patterns in this major tropical biodiversity hotspot. We found that palaeoclimate exerted a strong influence on palm species richness patterns, with richness peaking in areas with higher LGM precipitation relative to present-day even after controlling for modern environment, in particular in northeastern Madagascar, consistent with the persistence of tropical rainforest during the LGM primarily in this region. Our results provide evidence that diversity patterns in the World's most biodiverse regions may be shaped by long-term climate history as well as contemporary environment.
Funder
| Funder name | Awards |
Royal Botanic Gardens, Kew, United Kingdom | Threatened Plants Appeal |
Bentham-Moxon Trust, United Kingdom | |
Danmarks Frie Forskningsfond, Denmark | Grant no. 272–07-0242 - Grant no. 12-125079 |
Journal title
Proceedings of the Royal Society B: Biological Sciences
Volume
280
Issue
1757
Article number
20123048.
Publisher
The Royal Society
Place of publication
London, UK
ISSN
0962-8452
eISSN
1471-2954
Date accepted
January 22, 2013
Official URL
Rights statement
In Copyright