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« Previous AbstractA Delta9 desaturase (SlitDes11) is associated with the biosynthesis of ester sex pheromone components in Spodoptera litura    Next AbstractKey Amino Acid Residues Influencing Binding Affinities of Pheromone-Binding Protein from Athetis lepigone to Two Sex Pheromones »

J Insect Physiol


Title:Functional characterization of four sex pheromone receptors in the newly discovered maize pest Athetis lepigone
Author(s):Zhang YN; Du LX; Xu JW; Wang B; Zhang XQ; Yan Q; Wang G;
Address:"College of Life Sciences, Huaibei Normal University, Huaibei, China. Electronic address: ynzhang@chnu.edu.cn. State Key Laboratory for Biology of Plant Diseases and Insect Pests, Institute of Plant Protection, Chinese Academy of Agricultural Sciences, Beijing, China. College of Life Sciences, Huaibei Normal University, Huaibei, China. Education Ministry, Key Laboratory of Integrated Management of Crop Diseases and Pests, College of Plant Protection, Nanjing Agricultural University, Nanjing, China. Education Ministry, Key Laboratory of Integrated Management of Crop Diseases and Pests, College of Plant Protection, Nanjing Agricultural University, Nanjing, China. Electronic address: yanqi@njau.edu.cn"
Journal Title:J Insect Physiol
Year:2019
Volume:20180905
Issue:
Page Number:59 - 66
DOI: 10.1016/j.jinsphys.2018.08.009
ISSN/ISBN:1879-1611 (Electronic) 0022-1910 (Linking)
Abstract:"Chemoreception systems play a crucial role in regulating key behavioral activities of insects, such as mating, oviposition, and foraging. Odorant receptors (ORs) trigger the transduction of chemical signals into electric signals, and are involved in the corresponding responses associated with odorant guidance behaviors. Pheromone receptors (PRs) of male adult insects are generally thought to function in the recognition of female sex pheromones, and are also important molecular targets for the development of behavioral inhibitors and insecticides. In this study, we successfully expressed and functionally analyzed four AlepPRs of Athetis lepigone in Xenopus oocytes using the two-electrode voltage-clamp method. The results demonstrated that AlepOR3 responded exclusively to the sex pheromone compound of A. lepigone, (Z)-7-dodecenyl acetate (Z7-12:Ac) (EC(50)?ª+=?ª+8.830?ª+x?ª+10(-6)?ª+M), while AlepOR4 responded to all five compounds [(Z7-12:Ac, (Z)-8-dodecenyl acetate (Z8-12:Ac), (Z)-9-tetradecenyl acetate (Z9-14:Ac), (Z,E)-9,11-tetradecadienyl acetate (Z9,E11-14:Ac), and (Z,E)-9,12-tetradecadienyl acetate (Z9,E12-14:Ac)] and had a higher response to Z9-14:Ac (EC(50)?ª+=?ª+2.243?ª+x?ª+10(-5)?ª+M) than to Z7-12:Ac. However, AlepOR6 displayed a significantly higher response to a non-pheromone of A. lepigone, Z9,E12-14:Ac (EC(50)?ª+=?ª+7.145?ª+x?ª+10(-6)?ª+M), than to the other four compounds. AlepOR5 displayed no responses to any of the pheromone compounds of A. lepigone, but responded exclusively to (Z)-11-hexadecenyl acetate (Z11-16:Ac) (EC(50)?ª+=?ª+7.870?ª+x?ª+10(-6)?ª+M), a sex pheromone compound of other Noctuidae species. These findings can help explore the molecular mechanisms of sex pheromone recognition in A. lepigone and other moths, and develop broad-spectrum behavioral inhibitors and insecticides against different maize moths in future"
Keywords:"Animals Insect Proteins/*genetics/metabolism Male Moths/*genetics/metabolism Patch-Clamp Techniques Phylogeny Receptors, Pheromone/*genetics/metabolism Sex Attractants/*genetics/metabolism Athetis lepigone Pheromone receptor Sex pheromone Xenopus oocytes;"
Notes:"MedlineZhang, Ya-Nan Du, Li-Xiao Xu, Ji-Wei Wang, Bing Zhang, Xiao-Qing Yan, Qi Wang, Guirong eng Research Support, Non-U.S. Gov't England 2018/09/09 J Insect Physiol. 2019 Feb-Mar; 113:59-66. doi: 10.1016/j.jinsphys.2018.08.009. Epub 2018 Sep 5"

 
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