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A dopamine-gated learning circuit underpins reproductive state-dependent odor preference in Drosophila females

Ariane C. Boehm, Anja Friedrich, Sydney Hunt, Paul Bandow, K.P. Siju, Jean‐François De Backer, Julia Claussen, Marie Helen Link, Thomas Hofmann, Corinna Dawid, Ilona C Grunwald Kadow

2022eLife24 citationsDOIOpen Access PDF

Abstract

females, we find that mating does not induce a global change in brain activity. Instead, mating modulates the pheromone response of dopaminergic neurons innervating the fly's learning and memory center, the mushroom body (MB). Using the mating-induced increased attraction to the odor of important nutrients, polyamines, we show that disruption of the female fly's ability to smell, for instance the pheromone cVA, during mating leads to a reduction in polyamine preference for days later indicating that the odor environment at mating lastingly influences female perception and choice behavior. Moreover, dopaminergic neurons including innervation of the β'1 compartment are sufficient to induce the lasting behavioral increase in polyamine preference. We further show that MB output neurons (MBON) of the β'1 compartment are activated by pheromone odor and their activity during mating bidirectionally modulates preference behavior in mated and virgin females. Their activity is not required, however, for the expression of polyamine attraction. Instead, inhibition of another type of MBON innervating the β'2 compartment enables expression of high odor attraction. In addition, the response of a lateral horn (LH) neuron, AD1b2, which output is required for the expression of polyamine attraction, shows a modulated polyamine response after mating. Taken together, our data in the fly suggests that mating-related sensory experience regulates female odor perception and expression of choice behavior through a dopamine-gated learning circuit.

Topics & Concepts

Mushroom bodiesDopamineMatingAttractionDopaminergicOdorBiologyPheromoneNeuroscienceDrosophila melanogasterPolyamineInterneuronDrosophila (subgenus)Cell biologyZoologyGeneticsInhibitory postsynaptic potentialGeneLinguisticsPhilosophyNeurobiology and Insect Physiology ResearchInsect and Arachnid Ecology and BehaviorAnimal Behavior and Reproduction
A dopamine-gated learning circuit underpins reproductive state-dependent odor preference in Drosophila females | Litcius