Phylogeographic analysis reveals early Pleistocene divergence and strong genetic structure in Euphorbia phosphorea (Euphorbiaceae), an endemic species to the semi-arid Caatinga Biome

Author:

Hurbath Fernanda12ORCID,Leal Bárbara S S34,Cordeiro Inês2,Chaves Cleber J N3,Palma-Silva Clarisse3

Affiliation:

1. Departamento de Biociências, Universidade do Estado de Minas Gerais, Unidade Passos , Av. Juca Stockler 1130, Passos, CEP 37900-106, Minas Gerais , Brazil

2. Núcleo de Conservação da Biodiversidade, Instituto de Pesquisas Ambientais, Unidade Jardim Botânico , Avenida Miguel Stéfano 3687, São Paulo, CEP 04301-902, São Paulo , Brazil

3. Departamento de Biologia Vegetal, Universidade Estadual de Campinas, Cidade Universitária Zeferino Vaz , Barão Geraldo, Campinas, CEP 13083-863, São Paulo , Brazil

4. Instituto Tecnológico Vale , R. Boaventura da Silva 955, Belém, CEP 66055-090, Pará , Brazil

Abstract

Abstract The largest continuous patch of Seasonally Dry Tropical Forests (SDTF) is the Caatinga Biome in north-eastern Brazil, which has the greatest biodiversity and highest degree of endemism compared to any other SDTF patch of South America. Our aim was to conduct a phylogeographic study with Euphorbia phosphorea to understand the evolutionary history of this species endemic to the Caatinga Biome. We studied genetic diversity and structure, demographic dynamics, as well as intraspecific phylogenetic relationships, based on plastidial and nuclear DNA. In addition, we conducted species distribution modelling (SDM) to infer connectivity since the Last Interglacial. Our results recovered a stronger genetic structure for plastidial than for nuclear genome, which probably result from distinct species capability to seed and pollen dispersal, and low levels of genetic diversity within populations. Although SDM results suggest higher connectivity during Last Maximum Glacial, demographic analyses detected no signs of demographic expansion in this period. In agreement with previous studies with rock specialists, our data reveal remarkable among-population differentiation and low within-population genetic diversity, which make populations more prone to drift effects. Furthermore, our results shed light on the importance of early Pleistocene events in the diversification of lineages within the Caatinga Biome, although further comparative work is required.

Funder

Fundação de Amparo à Pesquisa do Estado de São Paulo

Conselho Nacional de Desenvolvimento Científico e Tecnológico

Coordenação de Aperfeiçoamento de Pessoal de Nível Superior

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Ecology, Evolution, Behavior and Systematics

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