Comparative transcriptomic analysis of chemoreceptors in two sympatric scarab beetles, Hylamorpha elegans and Brachysternus prasinus

Chemoreception through odorant receptors (ORs), ionotropic receptors (IRs) and gustatory receptors (GRs) represents the functions of key proteins in the chemical ecology of insects. Recent studies have identified chemoreceptors in coleopterans, facilitating the evolutionary analysis of not only ORs...

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Veröffentlicht in:Comparative biochemistry and physiology. Part D, Genomics & proteomics Genomics & proteomics, 2024-03, Vol.49, p.101174-101174, Article 101174
Hauptverfasser: Lizana, Paula, Mutis, Ana, Palma-Millanao, Rubén, González-González, Angélica, Ceballos, Ricardo, Quiroz, Andrés, Bardehle, Leonardo, Hidalgo, Alejandro, Torres, Fernanda, Romero-López, Angel, Venthur, Herbert
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Sprache:eng
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Zusammenfassung:Chemoreception through odorant receptors (ORs), ionotropic receptors (IRs) and gustatory receptors (GRs) represents the functions of key proteins in the chemical ecology of insects. Recent studies have identified chemoreceptors in coleopterans, facilitating the evolutionary analysis of not only ORs but also IRs and GRs. Thus, Cerambycidae, Tenebrionidae and Curculionidae have received increased attention. However, knowledge of the chemoreceptors from Scarabaeidae is still limited, particularly for those that are sympatric. Considering the roles of chemoreceptors, this analysis could shed light on evolutionary processes in the context of sympatry. Therefore, the aim of this study was to identify and compare the repertoires of ORs, GRs and IRs between two sympatric scarab beetles, Hylamorpha elegans and Brachysternus prasinus. Here, construction of the antennal transcriptomes of both scarab beetle species and analyses of their phylogeny, molecular evolution and relative expression were performed. Thus, 119 new candidate chemoreceptors were identified for the first time, including 17 transcripts for B. prasinus (1 GR, 3 IRs and 13 ORs) and 102 for H. elegans (22 GRs, 14 IRs and 66 ORs). Orthologs between the two scarab beetle species were found, revealing specific expansions as well as absence in some clades. Purifying selection appears to have occurred on H. elegans and B. prasinus ORs. Further efforts will be focused on target identification to characterize kairomone and/or pheromone receptors. [Display omitted] •RNA-seq from two sympatric scarab beetles reveals 119 new candidate chemoreceptors for the first time.•The oligophagous Hylamorpha elegans has six times the amount of chemoreceptors than the monophagous, Brachysternus prasinus.•Orthologues between both scarab beetles show specific Scarabaeidae expansions.•Purifying selection was found to be acting on particular OR lineages of H. elegans and B. prasinus.
ISSN:1744-117X
1878-0407
DOI:10.1016/j.cbd.2023.101174