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A Feedforward Circuit Regulates Action Selection of Pre-mating Courtship Behavior in Female Drosophila

机译:前馈电路调节女性果蝇在女性果蝇中的动作选择

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In the early phase of courtship, female fruit flies exhibit an acute rejection response to avoid unfavorable mating. This pre-mating rejection response is evolutionarily paralleled across species, but the molecular and neuronal basis of that behavior is unclear. Here, we show that a putative incoherent feedforward circuit comprising ellipsoid body neurons, cholinergic R4d, and its repressor GABAergic R2/R4m neurons regulates the pre-mating rejection response in the virgin female Drosophila melanogaster. Both R4d and R2/R4m are positively regulated, via specific dopamine receptors, by a subset of neurons in the dopaminergic PPM3 cluster. Genetic deprivation of GABAergic signal via GABA(A) receptor RNA interference in this circuit induces a massive rejection response, whereas activation of GABAergic R2/R4m or suppression of cholinergic R4d increases receptivity. Moreover, glutamatergic signaling via N-methyl-D-aspartate receptors induces NO-mediated retrograde regulation potentially from R4d to R2/R4m, likely providing flexible control of the behavioral switching from rejection to acceptance. Our study elucidates the molecular and neural mechanisms regulating the behavioral selection process of the pre-mating female.
机译:在求爱的早期阶段,雌性果蝇表现出急性排斥反应,以避免不利的交配。这种预交配的抑制响应在物种中进化并平行,但该行为的分子和神经元缺点尚不清楚。在这里,我们表明,包括椭球体神经元,胆碱能R4D及其阻遏物Gabaergic R2 / R4M神经元的推定不连贯的前馈电路调节原始雌性果蝇黑素体中的预交配排斥反应。通过多巴胺能PPM3簇中的神经元的子集,通过特异性多巴胺受体正质量调节R 4D和R2 / R4M。通过GABA(A)受体RNA干扰在该电路中的遗传剥夺的遗传剥夺信号诱导大量排斥反应,而加法加妥R2 / R4M的激活或胆碱能R4D的抑制增加了接受性。此外,通过N-甲基-D-天冬氨酸受体的谷氨酸胶信号传导诱导无介导的逆行调节可能从R4D到R2 / R4M,这可能提供从拒绝接受的行为切换的灵活控制。我们的研究阐明了调节预交配女性的行为选择过程的分子和神经机制。

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