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Mol Biol Evol


Title:"Characterization of Odorant Receptors from a Non-ditrysian Moth, Eriocrania semipurpurella Sheds Light on the Origin of Sex Pheromone Receptors in Lepidoptera"
Author(s):Yuvaraj JK; Corcoran JA; Andersson MN; Newcomb RD; Anderbrant O; Lofstedt C;
Address:"Department of Biology, Lund University, Lund, Sweden. The New Zealand Institute for Plant and Food Research Ltd, Auckland, New Zealand. School of Biological Sciences, University of Auckland, Auckland, New Zealand"
Journal Title:Mol Biol Evol
Year:2017
Volume:34
Issue:11
Page Number:2733 - 2746
DOI: 10.1093/molbev/msx215
ISSN/ISBN:1537-1719 (Electronic) 0737-4038 (Print) 0737-4038 (Linking)
Abstract:"Pheromone receptors (PRs) are essential in moths to detect sex pheromones for mate finding. However, it remains unknown from which ancestral proteins these specialized receptors arose. The oldest lineages of moths, so-called non-ditrysian moths, use short-chain pheromone components, secondary alcohols, or ketones, so called Type 0 pheromones that are similar to many common plant volatiles. It is, therefore, possible that receptors for these ancestral pheromones evolved from receptors detecting plant volatiles. Hence, we identified the odorant receptors (ORs) from a non-ditrysian moth, Eriocrania semipurpurella (Eriocraniidae, Lepidoptera), and performed functional characterization of ORs using HEK293 cells. We report the first receptors that respond to Type 0 pheromone compounds; EsemOR3 displayed highest sensitivity toward (2S, 6Z)-6-nonen-2-ol, whereas EsemOR5 was most sensitive to the behavioral antagonist (Z)-6-nonen-2-one. These receptors also respond to plant volatiles of similar chemical structures, but with lower sensitivity. Phylogenetically, EsemOR3 and EsemOR5 group with a plant volatile-responding receptor from the tortricid moth Epiphyas postvittana (EposOR3), which together reside outside the previously defined lepidopteran PR clade that contains the PRs from more derived lepidopteran families. In addition, one receptor (EsemOR1) that falls at the base of the lepidopteran PR clade, responded specifically to beta-caryophyllene and not to any other additional plant or pheromone compounds. Our results suggest that PRs for Type 0 pheromones have evolved from ORs that detect structurally-related plant volatiles. They are unrelated to PRs detecting pheromones in more derived Lepidoptera, which, in turn, also independently may have evolved a novel function from ORs detecting plant volatiles"
Keywords:"Animals Carrier Proteins/metabolism Evolution, Molecular HEK293 Cells/metabolism Humans Ketones/metabolism Lepidoptera/*genetics Moths/genetics Pheromones/metabolism Phylogeny Polycyclic Sesquiterpenes Receptors, Odorant/genetics/metabolism Receptors, Phe;"
Notes:"MedlineYuvaraj, Jothi Kumar Corcoran, Jacob A Andersson, Martin N Newcomb, Richard D Anderbrant, Olle Lofstedt, Christer eng 2017/11/11 Mol Biol Evol. 2017 Nov 1; 34(11):2733-2746. doi: 10.1093/molbev/msx215"

 
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Citation: El-Sayed AM 2024. The Pherobase: Database of Pheromones and Semiochemicals. <http://www.pherobase.com>.
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