bioRxiv · 10.1101/2020.07.08.193086
Genome-wide macroevolutionary signatures of key innovations in butterflies colonizing new host plants
Abstract
The exuberant proliferation of herbivorous insects is attributed to their associations with plants. Despite abundant studies on insect-plant interactions, we do not know whether host-plant shifts have impacted both genomic adaptation and species diversification over geological times. We show that the antagonistic insect-plant interaction between swallowtail butterflies and the highly toxic birthworts began 55 million years ago in Beringia, followed by several major ancient host-plant shifts. This evolutionary framework provides a unique opportunity for repeated tests of genomic signatures of macroevolutionary changes and estimation of diversification rates across their phylogeny. We find that host-plant shifts in butterflies are associated with both genome-wide adaptive molecular evolution (more genes under positive selection) and repeated bursts of speciation rates, contributing to an increase in global diversification through time. Our study links ecological changes, genome-wide adaptations and macroevolutionary consequences, lending support to the importance of ecological interactions as evolutionary drivers over long time periods.Competing Interest StatementThe authors have declared no competing interest.View Full Text
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Rémi Allio, Benoit Nabholz, Stefan Wanke, Guillaume Chomicki, Oscar A. Pérez-Escobar, Adam M. Cotton, Anne-Laure Clamens, Gaël J. Kergoat, Felix A.H. Sperling, Fabien L. Condamine. 2020-07-09. Genome-wide macroevolutionary signatures of key innovations in butterflies colonizing new host plants. https://doi.org/10.1101/2020.07.08.193086
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