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Multimodal Chemosensory Circuits Controlling Male Courtship in Drosophila

机译:多模式化学感应电路控制果蝇中的男性求爱。

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摘要

Throughout the animal kingdom, internal states generate long-lasting and self-perpetuating chains of behavior. In Drosophila, males instinctively pursue females with a lengthy and elaborate courtship ritual triggered by activation of sexually dimorphic P1 interneurons. Gustatory pheromones are thought to activate P1 neurons but the circuit mechanisms that dictate their sensory responses to gate entry into courtship remain unknown. Here, we use circuit mapping and in vivo functional imaging techniques to trace gustatory and olfactory pheromone circuits to their point of convergence onto P1 neurons and reveal how their combined input underlies selective tuning to appropriate sexual partners. We identify inhibition, even in response to courtship-promoting pheromones, as a key circuit element that tunes and tempers P1 neuron activity. Our results suggest a circuit mechanism in which balanced excitation and inhibition underlie discrimination of prospective mates and stringently regulate the transition to courtship in Drosophila.
机译:在整个动物界中,内部状态产生了持久且自我延续的行为链。在果蝇中,雄性本能地追求雌性,这种雌性是通过激活性二形性P1中间神经元而引发的漫长而复杂的求爱仪式。人们认为,味觉信息素可以激活P1神经元,但是指示其对门控进入求爱的感觉反应的电路机制仍然未知。在这里,我们使用电路映射和体内功能成像技术来追踪味觉和嗅觉信息素电路,使其收敛到P1神经元上,并揭示它们的组合输入如何构成对适当性伴侣的选择性调节的基础。我们确定抑制,即使是对促进求爱的信息素的反应,也是调节和调节P1神经元活性的关键电路元件。我们的结果提出了一种电路机制,其中平衡的激发和抑制是潜在配偶的判别基础,并严格控制果蝇向求爱的过渡。

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