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Encoding social signals in the mouse main olfactory bulb

机译:在鼠标主嗅球中编码社交信号

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Mammalian urine releases complex mixtures of volatile compounds that are used in reproduction, territoriality and conspecific recognition. To understand how such complex mixtures are represented in the main olfactory bulb, we analysed the electrophysiological responses of individual mitral cells to volatile compounds in mouse urine. In both males and females, urine volatile compounds evoke robust responses in a small subset of mitral cells. Fractionation of the volatile compounds using gas chromatography showed that out of the hundreds of compounds present, mitral cells are activated by single compounds. One cohort of mitral cells responded exclusively to male urine; these neurons were activated by ( methylthio) methanethiol, a potent, previously unknown semiochemical present only in male urine. When added to urine, synthetic ( methylthio) methanethiol significantly enhances urine attractiveness to female mice. We conclude that mitral cells represent natural odorant stimuli by acting as selective feature detectors, and that their activation is largely independent of the presence of other components in the olfactory stimulus.
机译:哺乳动物的尿液会释放出挥发性化合物的复杂混合物,这些混合物用于生殖,地域性和特定识别。为了了解这种复杂的混合物如何在主要嗅球中表现出来,我们分析了单个二尖瓣细胞对小鼠尿液中挥发性化合物的电生理反应。在男性和女性中,尿液挥发性化合物在二尖瓣细胞的一小部分中都能引起强烈的反应。使用气相色谱分离挥发性化合物表明,在存在的数百种化合物中,二尖瓣细胞被单个化合物激活。一组二尖瓣细胞仅对雄性尿有反应;这些神经元被(甲硫基)甲硫醇激活,后者是一种仅在男性尿液中有效的,以前未知的化学信息素。当添加到尿液中时,合成的(甲硫基)甲硫醇会显着增强尿液对雌性小鼠的吸引力。我们的结论是,二尖瓣细胞通过充当选择性特征检测器来代表自然的气味刺激,并且它们的激活在很大程度上与嗅觉刺激中其他成分的存在无关。

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