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双向电路开关会改变雌雄大脑中的信息素信号。

A bidirectional circuit switch reroutes pheromone signals in male and female brains.

机构信息

Division of Neurobiology, MRC Laboratory of Molecular Biology, Cambridge CB2 0QH, UK.

Division of Neurobiology, MRC Laboratory of Molecular Biology, Cambridge CB2 0QH, UK.

出版信息

Cell. 2013 Dec 19;155(7):1610-23. doi: 10.1016/j.cell.2013.11.025.

Abstract

The Drosophila sex pheromone cVA elicits different behaviors in males and females. First- and second-order 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.

摘要

果蝇性信息素 cVA 在雌雄个体中引发不同的行为。第一和第二级嗅觉神经元表现出相同的信息素反应,这表明性别基因在大脑的更深层次上差异地连接回路。使用体内全细胞电生理学,我们现在表明,两个第三级嗅觉神经元簇具有不同的性信息素反应。一个簇在雌性中响应;另一个在雄性中响应。这些簇存在于两性中,共享共同的输入途径,但性别特异性布线将信息素重新路由。调节树突位置,无果转录因子连接雄性响应簇并将雌性响应簇与信息素输入断开。第三级神经元的选择性雄性化改变了它们的形态和信息素反应,证明了通过开关基因的细胞自主作用可以对电路进行功能重布线。这种双向开关类似于电气转换开关,为激活雌雄个体不同行为提供了简单的电路逻辑。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9ceb/3898676/56b0d3d02193/fx1.jpg

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