Spodoptera littoralis genome mining brings insights on the dynamic of expansion of gustatory receptors in polyphagous noctuidae

Author:

Meslin Camille1ORCID,Mainet Pauline1,Montagné Nicolas1,Robin Stéphanie23,Legeai Fabrice23ORCID,Bretaudeau Anthony23,Johnston J Spencer4,Koutroumpa Fotini15,Persyn Emma16ORCID,Monsempès Christelle1,François Marie-Christine1,Jacquin-Joly Emmanuelle1ORCID

Affiliation:

1. INRAE, Sorbonne Université, CNRS, IRD, UPEC, Université de Paris, Institut d’Ecologie et des Sciences de l’Environnement de Paris (iEES-Paris) , 78026 Versailles, France

2. INRAE, UMR Institut de Génétique, Environnement et Protection des Plantes (IGEPP), BioInformatics Platform for Agroecosystems Arthropods (BIPAA), Campus Beaulieu , 35042 Rennes, France

3. INRIA, IRISA, GenOuest Core Facility, Campus de Beaulieu , Rennes 5042, France

4. Department of Entomology, Texas A&M University , College Station, TX 77843, USA

5. Present address: INRAE, Université Tours , Infectiologie et Santé Publique (ISP), 37380 Nouzilly, France

6. CIRAD, UMR PVBMT , Réunion, France

Abstract

Abstract The bitter taste, triggered via gustatory receptors, serves as an important natural defense against the ingestion of poisonous foods in animals, and the increased host breadth is usually linked to an increase in the number of gustatory receptor genes. This has been especially observed in polyphagous insect species, such as noctuid species from the Spodoptera genus. However, the dynamic and physical mechanisms leading to these gene expansions and the evolutionary pressures behind them remain elusive. Among major drivers of genome dynamics are the transposable elements but, surprisingly, their potential role in insect gustatory receptor expansion has not been considered yet. In this work, we hypothesized that transposable elements and possibly positive selection would be involved in the highly dynamic evolution of gustatory receptor in Spodoptera spp. We first sequenced de novo the full 465 Mb genome of S. littoralis, and manually annotated the main chemosensory genes, including a large repertoire of 373 gustatory receptor genes (including 19 pseudogenes). We also improved the completeness of S. frugiperda and S. litura gustatory receptor gene repertoires. Then, we annotated transposable elements and revealed that a particular category of class I retrotransposons, the SINE transposons, was significantly enriched in the vicinity of gustatory receptor gene clusters, suggesting a transposon-mediated mechanism for the formation of these clusters. Selection pressure analyses indicated that positive selection within the gustatory receptor gene family is cryptic, only 7 receptors being identified as positively selected. Altogether, our data provide a new good quality Spodoptera genome, pinpoint interesting gustatory receptor candidates for further functional studies and bring valuable genomic information on the mechanisms of gustatory receptor expansions in polyphagous insect species.

Funder

French National Research Agency

European Union’s Horizon 2020 research and innovation program under the Marie Skłodowska-Curie

ITN IGNITE project

Publisher

Oxford University Press (OUP)

Subject

Genetics (clinical),Genetics,Molecular Biology

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