bioRxiv · 10.1101/594960
Drosophila female-specific brain neuron elicits persistent position- and direction-selective male-like social behaviors
Abstract
Latent neural circuitry in the female brain encoding male-like mating behaviors has been revealed in both mice and flies. In Drosophila, a key component of this circuitry consists of the doublesex-expressing pC1 neurons, which were deemed to exist in both sexes and function based on the amount of cells being activated. Here, we identify pC1-alpha, a female-specific subtype of pC1, as responsible for inducing persistent male-like social behaviors in females. We demonstrate that activation of a single pC1-alpha neuron is sufficient for such induction in a position- and direction-selective manner, and activity of pC1-alpha neurons as a whole is indispensable for maintaining normal sexual receptivity. These dual functions of pC1-alpha may require different neurotransmission, with acetylcholine specifically required for the former but not the latter. Our findings suggest that pC1-alpha may be the female counterpart of male P1 due to their shared similarities in morphology, lineage, and social promoting function.
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Wu, Y., Bidaye, S., Mahringer, D.. 2019-03-31. Drosophila female-specific brain neuron elicits persistent position- and direction-selective male-like social behaviors. https://doi.org/10.1101/594960
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