Distinct protocerebral neuropils associated with attractive and aversive female-produced odorants in the male moth brain

Author:

Kymre Jonas HansenORCID,Liu XiaoLan,Ian Elena,Berge Christoffer Nerland,Zhao XinCheng,Wang GuiRong,Berg Bente G.,Chu Xi

Abstract

AbstractThe pheromone system of heliothine moths is an optimal model for studying principles underlying higher-order olfactory processing. In Helicoverpa armigera, three male-specific glomeruli receive input about three female-produced signals, the primary pheromone component, serving as an attractant, and two minor constituents, serving a dual function, i.e. attraction versus inhibition of attraction. From the antennal-lobe glomeruli, the information is conveyed to higher olfactory centers, including the lateral protocerebrum, via three main paths – of which the medial tract is the most prominent. In this study, we traced physiologically identified medial-tract projection neurons from each of the three male-specific glomeruli with the aim of mapping their terminal branches in the lateral protocerebrum. Our data suggest that the neurons’ wide-spread projections are organized according to behavioral significance, including a spatial separation of signals representing attraction versus inhibition – however, with a unique capacity of switching behavioral consequence based on the amount of the minor components.

Publisher

Cold Spring Harbor Laboratory

Reference64 articles.

1. Central nervous processing of sex pheromones in two strains of the European corn borer Ostrinia nubilalis (Lepidoptera: Pyralidae);Journal of Experimental Biology,1997

2. Baker, T. C. , & Hansson, B. S. (2016). Moth Sex Pheromone Olfaction: Flux and Flexibility in the Coordinated Confl uences of Visual and Olfactory Pathways. In J. D. Allison & R. T. Cardé (Eds.), Pheromone Communication in Moths: Evolution, Behavior, and Application. Oakland: University of California Press.

3. The macroglomerular complex of the antennal lobe in the tobacco budworm moth Heliothis virescens  : specified subdivision in four compartments according to information about biologically significant compounds

4. γ-Aminobutyric acid immunostaining in the antennal lobe of the moth Heliothis virescens and its colocalization with neuropeptides

5. Processing of pheromone information in related species of heliothine moths;Insects,2014

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