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« Previous AbstractSilencing the Odorant Binding Protein RferOBP1768 Reduces the Strong Preference of Palm Weevil for the Major Aggregation Pheromone Compound Ferrugineol    Next AbstractOlfactory environment and coitus-induced ovulation and/or luteinization in the cyclic female rat »

Mol Ecol


Title:"Pheromone receptor of the globally invasive quarantine pest of the palm tree, the red palm weevil (Rhynchophorus ferrugineus)"
Author(s):Antony B; Johny J; Montagne N; Jacquin-Joly E; Capoduro R; Cali K; Persaud K; Al-Saleh MA; Pain A;
Address:"Department of Plant Protection, College of Food and Agricultural Sciences, Center for Chemical Ecology and Functional Genomics, Chair of Date Palm Research, King Saud University, Riyadh, Saudi Arabia. INRAE, Sorbonne Universite, CNRS, IRD, UPEC, Institute of Ecology and Environmental Sciences of Paris, iEES-Paris, Universite Paris Diderot, Versailles, France. Department of Chemical Engineering and Analytical Science, The University of Manchester, Manchester, UK. BESE Division, King Abdullah University of Science and Technology (KAUST), Jeddah, Saudi Arabia"
Journal Title:Mol Ecol
Year:2021
Volume:20210322
Issue:9
Page Number:2025 - 2039
DOI: 10.1111/mec.15874
ISSN/ISBN:1365-294X (Electronic) 0962-1083 (Linking)
Abstract:"Palm trees are of immense economic, sociocultural, touristic, and patrimonial significance all over the world, and date palm-related knowledge, traditions, and practices are now included in UNESCOs list of the Intangible Cultural Heritage of Humanity. Of all the pests that infest these trees, the red palm weevil (RPW), Rhynchophorus ferrugineus (Olivier), is its primary enemy. The RPW is a category-1 quarantine insect pest that causes enormous economic losses in palm tree cultivation worldwide. The RPW synchronizes mass gathering on the palm tree for feeding and mating, regulated by a male-produced pheromone composed of two methyl-branched compounds, (4RS, 5RS)-4-methylnonan-5-ol (ferrugineol) and 4(RS)-methylnonan-5-one (ferrugineone). Despite the importance of odorant detection in long-range orientation towards palm trees, palm colonization, and mating, the pheromone receptor has not been identified in this species. In this study, we report the identification and characterization of the first RPW pheromone receptor, RferOR1. Using gene silencing and functional expression in Drosophila olfactory receptor neurons, we demonstrate that RferOR1 is tuned to ferrugineol and ferrugineone and binds five other structurally related molecules. We reveal the lifetime expression of RferOR1, which correlates with adult mating success irrespective of age, a factor that could explain the wide distribution and spread of this pest. As palm weevils are challenging to control based on conventional methods, elucidation of the mechanisms of pheromone detection opens new routes for mating disruption and the early detection of this pest via the development of pheromone receptor-based biosensors"
Keywords:"Animals Male Pheromones Quarantine Receptors, Pheromone Trees *Weevils/genetics Rhynchophorus ferrugineus aggregation pheromone deorphanization pheromone receptor red palm weevil;"
Notes:"MedlineAntony, Binu Johny, Jibin Montagne, Nicolas Jacquin-Joly, Emmanuelle Capoduro, Remi Cali, Khasim Persaud, Krishna Al-Saleh, Mohammed Ali Pain, Arnab eng Research Support, Non-U.S. Gov't England 2021/03/10 Mol Ecol. 2021 May; 30(9):2025-2039. doi: 10.1111/mec.15874. Epub 2021 Mar 22"

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