Chromatin-based reprogramming of a courtship regulator by concurrent pheromone perception and hormone signaling.

Zhao, Songhui; Deanhardt, Bryson; Barlow, George Thomas; Schleske, Paulina Guerra; Rossi, Anthony M; Volkan, Pelin C · Sci Adv · 2020

basic_science · Level V

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Abstract

To increase fitness, animals use both internal and external states to coordinate reproductive behaviors. The molecular mechanisms underlying this coordination remain unknown. Here, we focused on pheromone-sensing <i>Drosophila</i> Or47b neurons, which exhibit age- and social experience-dependent increase in pheromone responses and courtship advantage in males. Fruitless<sup>M</sup> (Fru<sup>M</sup>), a master regulator of male courtship behaviors, drives the effects of social experience and age on Or47b neuron responses and function. We show that simultaneous exposure to social experience and age-specific juvenile hormone (JH) induces chromatin-based reprogramming of <i>fru<sup>M</sup></i> expression in Or47b neurons. Group housing and JH signaling increase <i>fru<sup>M</sup></i> expression in Or47b neurons and active chromatin marks at <i>fru<sup>M</sup></i> promoter. Conversely, social isolation or loss of JH signaling decreases <i>fru<sup>M</sup></i> expression and increases repressive marks around <i>fru<sup>M</sup></i> promoter. Our results suggest that <i>fru<sup>M</sup></i> promoter integrates coincident hormone and pheromone signals driving chromatin-based changes in expression and ultimately neuronal and behavioral plasticity.

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