Processing of Pheromone Information in Related Species of Heliothine Moths

Insects. 2014 Oct 14;5(4):742-61. doi: 10.3390/insects5040742.

Abstract

In heliothine moths, the male-specific olfactory system is activated by a few odor molecules, each of which is associated with an easily identifiable glomerulus in the primary olfactory center of the brain. This arrangement is linked to two well-defined behavioral responses, one ensuring attraction and mating behavior by carrying information about pheromones released by conspecific females and the other inhibition of attraction via signal information emitted from heterospecifics. The chance of comparing the characteristic properties of pheromone receptor proteins, male-specific sensory neurons and macroglomerular complex (MGC)-units in closely-related species is especially intriguing. Here, we review studies on the male-specific olfactory system of heliothine moths with particular emphasis on five closely related species, i.e., Heliothis virescens, Heliothis subflexa, Helicoverpa zea, Helicoverpa assulta and Helicoverpa armigera.

Keywords: compartmentalization of sensory neurons; interspecific signal; lateral horn; macroglomerular complex; odorant receptor; olfactory sensory neuron; pheromone.

Publication types

  • Review