Back to Search Start Over

Stage-specific expression of an odorant receptor underlies olfactory behavioral plasticity in Spodoptera littoralis larvae.

Authors :
Revadi SV
Giannuzzi VA
Rossi V
Hunger GM
Conchou L
Rondoni G
Conti E
Anderson P
Walker WB
Jacquin-Joly E
Koutroumpa F
Becher PG
Source :
BMC biology [BMC Biol] 2021 Oct 28; Vol. 19 (1), pp. 231. Date of Electronic Publication: 2021 Oct 28.
Publication Year :
2021

Abstract

Background: The detection of environmental cues and signals via the sensory system directs behavioral choices in diverse organisms. Insect larvae rely on input from the chemosensory system, mainly olfaction, for locating food sources. In several lepidopteran species, foraging behavior and food preferences change across larval instars; however, the molecular mechanisms underlying such behavioral plasticity during larval development are not fully understood. Here, we hypothesize that expression patterns of odorant receptors (ORs) change during development, as a possible mechanism influencing instar-specific olfactory-guided behavior and food preferences.<br />Results: We investigated the expression patterns of ORs in larvae of the cotton leafworm Spodoptera littoralis between the first and fourth instar and revealed that some of the ORs show instar-specific expression. We functionally characterized one OR expressed in the first instar, SlitOR40, as responding to the plant volatile, β-caryophyllene and its isomer α-humulene. In agreement with the proposed hypothesis, we showed that first but not fourth instar larvae responded behaviorally to β-caryophyllene and α-humulene. Moreover, knocking out this odorant receptor via CRISPR-Cas9, we confirmed that instar-specific responses towards its cognate ligands rely on the expression of SlitOR40.<br />Conclusion: Our results provide evidence that larvae of S. littoralis change their peripheral olfactory system during development. Furthermore, our data demonstrate an unprecedented instar-specific behavioral plasticity mediated by an OR, and knocking out this OR disrupts larval behavioral plasticity. The ecological relevance of such behavioral plasticity for S. littoralis remains to be elucidated, but our results demonstrate an olfactory mechanism underlying this plasticity in foraging behavior during larval development.<br /> (© 2021. The Author(s).)

Details

Language :
English
ISSN :
1741-7007
Volume :
19
Issue :
1
Database :
MEDLINE
Journal :
BMC biology
Publication Type :
Academic Journal
Accession number :
34706739
Full Text :
https://doi.org/10.1186/s12915-021-01159-1