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Pheromone antagonism in Plu tella xylostella ( L innaeus) by sex pheromones of two sympatric noctuid moths
Author(s) -
Wang FuMin,
Shen ZhiJie,
Schal Coby,
Zhu Junwei J,
Zhou GuoXin,
Wang YuLei,
Wang JiRui,
Deng JianYu,
Wan NianFeng
Publication year - 2022
Publication title -
pest management science
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.296
H-Index - 125
eISSN - 1526-4998
pISSN - 1526-498X
DOI - 10.1002/ps.6651
Subject(s) - sex pheromone , sympatric speciation , biology , pheromone , antagonism , pheromone trap , zoology , botany , genetics , receptor
BACKGROUND Responses to sex pheromones are commonly antagonized by pheromone components of closely related species. Pheromone antagonism has not been widely explored for phylogenetically distant species that have completely different pheromone components. Yet, pheromone components of sympatrically occurring species may also interfere with each other even if these species are distantly related. Here, the effects of heterospecific pheromones on electrophysiology (electroantennogram, EAG) and behavioral responses were tested on the diamondback moth Plutella xyloslella (Plutellidae) and two sympatric noctuid moth species, Spodoptera litura and Spodoptera exigua , whose larvae also feed on Brassica crops. RESULTS The sex pheromone blend of P. xyloslella , and its components, did not elicit EAG responses in males of the two noctuid species, while sex pheromone components of the noctuid moths elicited significant EAG responses in P. xyloslella males. In wind tunnel bioassays, both ( Z , E )‐9, 12‐tetradecadienyl acetate (ZE‐9,12‐14:OAc) and ( Z , E )‐9, 11‐tetradecadienyl acetate (ZE‐9,11‐14:OAc), sex pheromone components from the noctuid moths, inhibited the upwind flight behavior of P. xyloslella males toward an intraspecific pheromone odor source. In Brassica fields, sex pheromone lures of P. xyloslella did not influence trap catches of the noctuid moths, while P. xyloslella pheromone lures baited with either ZE‐9,11‐14:OAc or ZE‐9,12‐14:OAc decreased trap catches of P. xyloslella males in a dose‐dependent manner. Trap catches of P. xylostella males were also affected by the proximity of ZE‐9,11‐14:OAc or ZE‐9,12‐14:OAc to P. xylostella lures. CONCLUSION The uni‐directional pheromone antagonism by ZE‐9,11‐14:OAc and ZE‐9,12‐14:OAc suggests innovative semiochemical‐based strategies for the management of P. xyloslella and other economically important pests in Brassica fields. © 2021 Society of Chemical Industry.