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Research article - Peer-reviewed, 2015

A herbivore-induced plant volatile interferes with host plant and mate location in moths through suppression of olfactory signalling pathways

Saveer, Ahmed; Borrero, Felipe; Strauch, Martin; Zakir, Ali; Bengtsson, Marie; Ignell, Rickard; Andersson, Peter; Becher, Paul; Witzgall, Peter; Dekker, Teun; Tasin, Marco; Anderson, Peter

Abstract

Background: Plants under herbivore attack release volatiles that attract natural enemies, and herbivores in turn avoid such plants. Whilst herbivore-induced plant volatile blends appeared to reduce the attractiveness of host plants to herbivores, the volatiles that are key in this process and particularly the way in which deterrence is coded in the olfactory system are largely unknown. Here we demonstrate that herbivore-induced cotton volatiles suppress orientation of the moth Spodoptera littoralis to host plants and mates.Results: We found that (E)-4,8-dimethyl-1,3,7-nonatriene (DMNT), an induced volatile, is key in herbivore deterrence: DMNT suppressed plant odour-and pheromone-induced behaviours. We then dissected the neurophysiological basis of this interaction. DMNT-responding glomeruli were also activated by other plant compounds, suggesting that S. littoralis possesses no segregated olfactory circuit dedicated exclusively to DMNT. Instead, DMNT suppressed responses to the main pheromone component, (Z)-9-(E)-11-tetradecenyl acetate, and primarily to (Z)-3-hexenyl acetate, a host plant attractant.Conclusion: Our study shows that olfactory sensory inhibition, which has previously been reported without reference to an animal's ecology, can be at the core of coding of ecologically relevant odours. As DMNT attracts natural enemies and deters herbivores, it may be useful in the development or enhancement of push-pull strategies for sustainable agriculture.

Keywords

(E)-4,8-dimethyl-1,3,7-nonatriene; Herbivore-induced plant volatiles; Suppression; Antennal lobe; Spodoptera littoralis; Oviposition choice; Mating disruption; Olfaction; Orientation

Published in

BMC Biology
2015, volume: 13, article number: 75
Publisher: BIOMED CENTRAL LTD

Authors' information

Saveer, Ahmed
Swedish University of Agricultural Sciences, Department of Plant Protection Biology
Saveer, Ahmed
Vanderbilt University
Borrero, Felipe
Swedish University of Agricultural Sciences, Department of Plant Protection Biology
Borrero, Felipe
Colombian Corporation for Agricultural Research
Strauch, Martin
University of Konstanz
Zakir, Ali
Swedish University of Agricultural Sciences, Department of Plant Protection Biology
Zakir, Ali
COMSATS Institute of Information Technology
Swedish University of Agricultural Sciences, Department of Plant Protection Biology
Swedish University of Agricultural Sciences, Department of Plant Protection Biology
Andersson, Peter
Swedish University of Agricultural Sciences, Department of Plant Protection Biology
Swedish University of Agricultural Sciences, Department of Plant Protection Biology
Swedish University of Agricultural Sciences, Department of Plant Protection Biology
Swedish University of Agricultural Sciences, Department of Plant Protection Biology
Tasin, Marco
Swedish University of Agricultural Sciences, Department of Plant Protection Biology
Swedish University of Agricultural Sciences, Department of Plant Protection Biology

Associated SLU-program

SLU Network Plant Protection

Sustainable Development Goals

SDG2 Zero hunger

UKÄ Subject classification

Ecology
Behavioral Sciences Biology

Publication Identifiers

DOI: https://doi.org/10.1186/s12915-015-0188-3

URI (permanent link to this page)

https://res.slu.se/id/publ/68679