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Phylogeny and biogeography of Primula sect. Armerina: implications for plant evolution under climate change and the uplift of the Qinghai-Tibet Plateau

Authors :
Nicolas Salamin
Elena Conti
Guangpeng Ren
University of Zurich
Salamin, Nicolas
Source :
BMC Evolutionary Biology, BMC Evolutionary Biology, vol. 15, pp. 161
Publication Year :
2015

Abstract

BackgroundThe historical orogenesis and associated climatic changes of mountain areas have been suggested to partly account for the occurrence of high levels of biodiversity and endemism. However, their effects on dispersal, differentiation and evolution of many groups of plants are still unknown. In this study, we examined the detailed diversification history ofPrimulasect.Armerina, and used biogeographic analysis and macro-evolutionary modeling to investigate a series of different questions concerning the evolution of the geographical and ecological distribution of the species in this section.ResultsWe sequenced five chloroplast and one nuclear genes for species ofPrimulasect.Armerina. Neither chloroplast nor nuclear trees support the monophyly of the section. The major incongruences between the two trees occur among closely related species and may be explained by hybridization. Our dating analyses based on the chloroplast dataset suggest that this section began to diverge from its relatives around 3.55 million years ago, largely coinciding with the last major uplift of the Qinghai-Tibet Plateau (QTP). Biogeographic analysis supports the origin of the section in the Himalayan Mountains and dispersal from the Himalayas to Northeastern QTP, Western QTP and Hengduan Mountains. Furthermore, evolutionary models of ecological niches show that the twoP. fasciculataclades have significantly different climatic niche optima and rates of niche evolution, indicating niche evolution under climatic changes and further providing evidence for explaining their biogeographic patterns.ConclusionOur results support the hypothesis that geologic and climatic events play important roles in driving biological diversification of organisms in the QTP area. The Pliocene uplift of the QTP and following climatic changes most likely promoted both the inter- and intraspecific divergence ofPrimulasect.Armerina.This study also illustrates how niche evolution under climatic changes influences biogeographic patterns.

Details

ISSN :
14712148
Volume :
15
Database :
OpenAIRE
Journal :
BMC evolutionary biology
Accession number :
edsair.doi.dedup.....f0e5b936156fe66ed455ea5e55d8908d