Shifts in climate foster exceptional opportunities for species radiation: the case of South african geraniums.
Climate change is often assumed to be a major driver of biodiversity loss. However, it can also set the stage for novel diversification in lineages with the evolutionary ability to colonize new environments. Here we tested if the extraordinary evolutionary success of the genus Pelargonium was relate...
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doaj-5c97adbbfef34cb39c275edf2e0fc1722020-11-25T01:59:45ZengPublic Library of Science (PLoS)PLoS ONE1932-62032013-01-01812e8308710.1371/journal.pone.0083087Shifts in climate foster exceptional opportunities for species radiation: the case of South african geraniums.Hugo I Martínez-CabreraPedro R Peres-NetoClimate change is often assumed to be a major driver of biodiversity loss. However, it can also set the stage for novel diversification in lineages with the evolutionary ability to colonize new environments. Here we tested if the extraordinary evolutionary success of the genus Pelargonium was related to the ability of its species to capitalize on the climate niche variation produced by the historical changes in southern Africa. We evaluated the relationship between rates of climate niche evolution and diversification rates in the main Pelargonium lineages and disentangled the roles of deep and recent historical events in the modification of species niches. Pelargonium clades exhibiting higher ecological differentiation along summer precipitation (SPP) gradients also experienced higher diversification rates. Faster rates of niche differentiation in spatially structured variables, along with lower levels of niche overlap among closely related species, suggest recent modification in species niches (e.g. dispersal or range shift) and niche lability. We suggest that highly structured SPP gradients established during the aridification process within southern Africa, in concert with niche lability and low niche overlap, contributed to species divergence. These factors are likely to be responsible for the extensive diversification of other lineages in this diversity hot spot.http://europepmc.org/articles/PMC3866268?pdf=render |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Hugo I Martínez-Cabrera Pedro R Peres-Neto |
spellingShingle |
Hugo I Martínez-Cabrera Pedro R Peres-Neto Shifts in climate foster exceptional opportunities for species radiation: the case of South african geraniums. PLoS ONE |
author_facet |
Hugo I Martínez-Cabrera Pedro R Peres-Neto |
author_sort |
Hugo I Martínez-Cabrera |
title |
Shifts in climate foster exceptional opportunities for species radiation: the case of South african geraniums. |
title_short |
Shifts in climate foster exceptional opportunities for species radiation: the case of South african geraniums. |
title_full |
Shifts in climate foster exceptional opportunities for species radiation: the case of South african geraniums. |
title_fullStr |
Shifts in climate foster exceptional opportunities for species radiation: the case of South african geraniums. |
title_full_unstemmed |
Shifts in climate foster exceptional opportunities for species radiation: the case of South african geraniums. |
title_sort |
shifts in climate foster exceptional opportunities for species radiation: the case of south african geraniums. |
publisher |
Public Library of Science (PLoS) |
series |
PLoS ONE |
issn |
1932-6203 |
publishDate |
2013-01-01 |
description |
Climate change is often assumed to be a major driver of biodiversity loss. However, it can also set the stage for novel diversification in lineages with the evolutionary ability to colonize new environments. Here we tested if the extraordinary evolutionary success of the genus Pelargonium was related to the ability of its species to capitalize on the climate niche variation produced by the historical changes in southern Africa. We evaluated the relationship between rates of climate niche evolution and diversification rates in the main Pelargonium lineages and disentangled the roles of deep and recent historical events in the modification of species niches. Pelargonium clades exhibiting higher ecological differentiation along summer precipitation (SPP) gradients also experienced higher diversification rates. Faster rates of niche differentiation in spatially structured variables, along with lower levels of niche overlap among closely related species, suggest recent modification in species niches (e.g. dispersal or range shift) and niche lability. We suggest that highly structured SPP gradients established during the aridification process within southern Africa, in concert with niche lability and low niche overlap, contributed to species divergence. These factors are likely to be responsible for the extensive diversification of other lineages in this diversity hot spot. |
url |
http://europepmc.org/articles/PMC3866268?pdf=render |
work_keys_str_mv |
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