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嗅球副区的新生中间神经元促进雌性小鼠的配偶识别。

Newborn interneurons in the accessory olfactory bulb promote mate recognition in female mice.

机构信息

Department of Animal and Human Biology, University of Turin Turin, Italy.

出版信息

Front Neurosci. 2011 Sep 28;5:113. doi: 10.3389/fnins.2011.00113. eCollection 2011.

Abstract

In the olfactory bulb of adult rodents, local interneurons are constantly replaced by immature precursors derived from the subventricular zone. Whether any olfactory sensory process specifically relies on this cell renewal remains largely unclear. By using the well known model of mating-induced imprinting to avoid pregnancy block, which requires accessory olfactory bulb (AOB) function, we demonstrate that this olfactory memory formation critically depends on the presence of newborn granule neurons in this brain region. We show that, in adult female mice, exposure to the male urine compounds involved in mate recognition increases the number of new granule cells surviving in the AOB. This process is modulated by male signals sensed through the vomeronasal organ and, in turn, changes the activity of the downstream amygdaloid and hypothalamic nuclei involved in the pregnancy block response. Chemical depletion of newly generated bulbar interneurons causes strong impairment in mate recognition, thus resulting in a high pregnancy failure rate to familiar mating male odors. Taken together, our results indicate that adult neurogenesis is essential for specific brain functions such as persistent odor learning and mate recognition.

摘要

在成年啮齿动物的嗅球中,局部中间神经元不断被来自侧脑室下区的未成熟前体细胞所取代。嗅觉感觉过程是否特别依赖于这种细胞更新,在很大程度上还不清楚。通过使用众所周知的交配诱导印痕以避免妊娠阻断的模型,该模型需要副嗅球(AOB)的功能,我们证明了这种嗅觉记忆的形成严重依赖于该脑区新生颗粒神经元的存在。我们发现,在成年雌性小鼠中,暴露于参与配偶识别的雄性尿液化合物会增加 AOB 中存活的新颗粒细胞的数量。这个过程受到通过犁鼻器感知的雄性信号的调节,反过来又会改变参与妊娠阻断反应的下游杏仁核和下丘脑核的活性。新生嗅球中间神经元的化学耗竭会导致对配偶识别的严重损害,从而导致对熟悉的交配雄性气味的妊娠失败率很高。总之,我们的结果表明,成年神经发生对于特定的大脑功能(如持久的气味学习和配偶识别)是必不可少的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ad1d/3182443/a2235baf0895/fnins-05-00113-g001.jpg

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