Literature DB >> 33476719

Phylogeny, divergence times, and diversification in Calophyllaceae: Linking key characters and habitat changes to the evolution of Neotropical Calophylleae.

Fernanda Nunes Cabral1, Rafaela Jorge Trad2, Bruno Sampaio Amorim3, Jefferson Rodrigues Maciel4, Maria do Carmo Estanislau do Amaral2, Peter Stevens5.   

Abstract

The clusioid clade comprises five monophyletic families: Bonnetiaceae, Calophyllaceae, Clusiaceae s.s., Hypericaceae, and Podostemaceae. Even though the circumscription of these families is well established, phylogenetic relationships within some families remain unresolved. This study aims to infer phylogenetic relationships within the Neotropical Calophylleae based on a broad sampling of taxa and a multilocus approach. We then use our phylogenetic framework as basis to investigate the evolution and biogeography of Calophylleae and diversification shifts in Calophyllaceae. To reconstruct the phylogeny of the Neotropical Calophylleae, we used five plastid (matK, ndhF, rbcL, psbA-trnH, and trnK), two mitochondrial (matR and rps3), and two nuclear (EMB2765 and ITS) markers, including previously published and newly generated sequences. We sampled 74 species, increasing sampling of Neotropical taxa by 500%. Our phylogenetic hypothesis for Calophyllaceae provides additional support for the monophyly of all genera and allowed us to identify four main clades: Calophyllum, Kayea, Mammea, and the Neotropical clade. The Neotropical clade includes three main lineages, a small clade composed of Clusiella and Marila, and a large HaCaKi clade (i.e., Haplocarpa, Caraipa, and Kilmeyera) that is sister to Mahurea exstipulata. The evolution of three morphological traits (i.e., fleshy fruits, anther glands, and winged seeds) were shown to be associated with changes in evolutionary dynamics in Calophyllaceae, while a biome shift was detected in Kielmeyera, affecting net diversification within this genus. Major geological and climatic events such as the Andean uplift and a gradual decrease in temperatures seem to have influenced diversification rates within the Neotropical Calophylleae.
Copyright © 2021 Elsevier Inc. All rights reserved.

Entities:  

Keywords:  Ancestral area reconstruction; BAMM; Biogeography; Biome shift; HiSSE; Spatio-temporal evolution

Mesh:

Year:  2021        PMID: 33476719     DOI: 10.1016/j.ympev.2020.107041

Source DB:  PubMed          Journal:  Mol Phylogenet Evol        ISSN: 1055-7903            Impact factor:   4.286


  1 in total

1.  Calophyllaceae plastomes, their structure and insights in relationships within the clusioids.

Authors:  Rafaela Jorge Trad; Fernanda Nunes Cabral; Volker Bittrich; Saura Rodrigues da Silva; Maria do Carmo Estanislau do Amaral
Journal:  Sci Rep       Date:  2021-10-20       Impact factor: 4.379

  1 in total

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