A tale of two copies: Evolutionary trajectories of moth pheromone receptors

Author:

Li Zibo1ORCID,Capoduro Rémi1ORCID,Bastin–Héline Lucie12,Zhang Sai3,Sun Dongdong3,Lucas Philippe1,Dabir-Moghaddam Diane1ORCID,François Marie-Christine1,Liu Yang3ORCID,Wang Guirong3ORCID,Jacquin-Joly Emmanuelle1ORCID,Montagné Nicolas1ORCID,Meslin Camille1ORCID

Affiliation:

1. Sorbonne Université, Institut National de Recherche pour l'Agriculture, l'Alimentation et l'Environnement, CNRS, Institut de Recherche pour le Développement, Université Paris-Est-Créteil-Val-de-Marne, Université Paris Cité, Institut d’Ecologie et des Sciences de l’Environnement de Paris, Versailles 78026, France

2. Laboratoire Reproduction et Développement des plantes, UMR 5667, Ecole Normale Supérieure de Lyon, CNRS, Lyon F-69364, France

3. State Key Laboratory for Biology of Plant Diseases and Insect Pests, Institute of Plant Protection, Chinese Academy of Agricultural Sciences, Beijing 100193, China

Abstract

Pheromone communication is an essential component of reproductive isolation in animals. As such, evolution of pheromone signaling can be linked to speciation. For example, the evolution of sex pheromones is thought to have played a major role in the diversification of moths. In the crop pests Spodoptera littoralis and S. litura , the major component of the sex pheromone blend is ( Z , E )-9,11-tetradecadienyl acetate, which is lacking in other Spodoptera species. It indicates that a major shift occurred in their common ancestor. It has been shown recently in S. littoralis that this compound is detected with high specificity by an atypical pheromone receptor, named SlitOR5. Here, we studied its evolutionary history through functional characterization of receptors from different Spodoptera species. SlitOR5 orthologs in S. exigua and S. frugiperda exhibited a broad tuning to several pheromone compounds. We evidenced a duplication of OR5 in a common ancestor of S. littoralis and S. litura and found that in these two species, one duplicate is also broadly tuned while the other is specific to ( Z , E )-9,11-tetradecadienyl acetate. By using ancestral gene resurrection, we confirmed that this narrow tuning evolved only in one of the two copies issued from the OR5 duplication. Finally, we identified eight amino acid positions in the binding pocket of these receptors whose evolution has been responsible for narrowing the response spectrum to a single ligand. The evolution of OR5 is a clear case of subfunctionalization that could have had a determinant impact in the speciation process in Spodoptera species.

Funder

Agence Nationale de la Recherche

CSC | Chinese Government Scholarship

National Natural Science Foundation of China

Chinese Academy of Agricultural Sciences

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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