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A Bidirectional Circuit Switch Reroutes Pheromone Signals in Male and Female Brains

机译:双向电路开关重新路由男性和女性大脑中的信息素信号

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摘要

The Drosophila sex pheromone cVA elicits different behaviors in males and females. First- and secondorder olfactory neurons show identical pheromone responses, suggesting that sex genes differentially wire circuits deeper in the brain. Using in vivo whole-cell electrophysiology, we now show that two clusters of third-order olfactory neurons have dimorphic pheromone responses. One cluster responds in females; the other responds in males. These clusters are present in both sexes and share a common input pathway, but sex-specific wiring reroutes pheromone information. Regulating dendritic position, the fruitless transcription factor both connects the male-responsive cluster and disconnects the female-responsive cluster from pheromone input. Selective masculinization of third-order neurons transforms their morphology and pheromone responses, demonstrating that circuits can be functionally rewired by the cell-autonomous action of a switch gene. This bidirectional switch, analogous to an electrical changeover switch, provides a simple circuit logic to activate different behaviors in males and females.
机译:果蝇性信息素cVA在男性和女性中引起不同的行为。一阶和二阶嗅觉神经元显示出相同的信息素反应,这表明性基因差异性地在大脑的深处布线。使用体内全细胞电生理学,我们现在显示三阶嗅觉神经元的两个簇具有双态信息素反应。一类是雌性。另一个是男性。这些簇存在于两个性别中,并共享一个共同的输入途径,但是特定于性别的布线会重新路由信息素信息。调节树突状位置,无结果的转录因子既连接雄性应答簇,又断开雌性应答簇与信息素输入。三阶神经元的选择性男性化改变了它们的形态和信息素反应,表明电路可以通过开关基因的细胞自主作用在功能上重新连接。该双向开关类似于电气转换开关,提供了简单的电路逻辑来激活男性和女性的不同行为。

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