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Genomics of Neotropical biodiversity indicators: Two butterfly radiations with rampant chromosomal rearrangements and hybridization

  • Eva S.M. van der Heijden
  • , Karin Näsvall
  • , Fernando A. Seixas
  • , Carlos Eduardo Beserra Nobre
  • , Artur Campos D. Maia
  • , Patricio Salazar-Carrión
  • , Jonah M. Walker
  • , Daiane Szczerbowski
  • , Stefan Schulz
  • , Ian A. Warren
  • , Kimberly Gabriela Gavilanes Córdova
  • , María José Sánchez-Carvajal
  • , Franz Chandi
  • , Alex P. Arias-Cruz
  • , Nicol Ruedam
  • , Camilo Salazar
  • , Kanchon K. Dasmahapatra
  • , Stephen H. Montgomery
  • , Melanie McClure
  • , Dominic E. Absolon
  • Thomas C. Mathers, Camilla A. Santos, Shane McCarthy, Jonathan M.D. Wood, Gerardo Lamas, Caroline Bacquet, André Victor Lucci Freitas, Keith R. Willmott, Chris D. Jiggins, Marianne Elias, Joana I. Meier
  • Wellcome Sanger Institute
  • University of Cambridge
  • Harvard University
  • Universidade Federal de Pernambuco
  • Technical University of Braunschweig
  • Universidad Regional Amazónica Ikiam
  • Universidad del Rosario
  • University of York
  • University of Bristol
  • Université de Guyane
  • Universidad Nacional Mayor de San Marcos
  • Smithsonian Institution
  • Universidade Estadual de Campinas
  • University of Florida
  • Instituto Nacional de Biodiversidad
  • Sorbonne Université
  • Centre Interdisciplinaire de Recherche en Biologie

Research output: Contribution to journalArticlepeer-review

7 Scopus citations

Abstract

A central question in evolutionary biology is what drives the diversification of lineages. Rapid, recent radiations are ideal systems for this question because they still show key morphological and ecological adaptations associated with speciation. While most research on recent radiations focuses on those occurring in insular environments, less attention has been given to continental radiations with complex species interactions. Here, we study the drivers of continental radiations of Melinaea and Mechanitis butterflies (Nymphalidae: Ithomiini), which have rapidly radiated in the continental Neotropics. They are classical models for Amazonian biogeography and color pattern mimicry and have been proposed as biodiversity indicators. We generated reference genomes for five species of each genus and whole-genome resequencing data of most species and subspecies covering a wide geographic range to assess phylogeographic relationships, hybridization patterns, and chromosomal rearrangements. Our data help resolve the classification of these taxonomically challenging butterflies and reveal very high diversification rates. We find rampant evidence of historical hybridization and putative hybrid species in both radiations, which may have facilitated their rapid diversification by enriching the genetic diversity. Moreover, we identified dozens of chromosomal fusions and fissions between congeneric species that have likely expedited reproductive isolation. We conclude that interactions between geography, hybridization and chromosomal rearrangements have contributed to these rapid radiations in the highly diverse Neotropical region. We hypothesize that rapid radiations may be spurred if repeated periods of geographic isolation are combined with lineage-specific rapid accumulation of incompatibilities, followed by secondary contact with some gene exchange.

Original languageEnglish
Article numbere2410939122
JournalProceedings of the National Academy of Sciences of the United States of America
Volume122
Issue number31
DOIs
StatePublished - 5 Aug 2025

Bibliographical note

Publisher Copyright:
Copyright © 2025 the Author(s).

Keywords

  • biodiversity
  • butterflies
  • genomics
  • Neotropics
  • speciation

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