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Experience-Dependent Plasticity Drives Individual Differences in Pheromone-Sensing Neurons

机译:依赖于经验的可塑性驱动信息素敏感神经元的个体差异。

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摘要

Different individuals exhibit distinct behaviors, but studying the neuronal basis of individuality is a daunting challenge. Here, we considered this question in the vomeronasal organ, a pheromone-detecting epithelium containing hundreds of distinct neuronal types. Using light-sheet microscopy, we characterized in each animal the abundance of 17 physiologically defined types, altogether recording from half a million sensory neurons. Inter-animal differences were much larger than predicted by chance, and different physiological cell types showed distinct patterns of variability. One neuronal type was present in males and nearly absent in females. Surprisingly, this apparent sexual dimorphism was generated by plasticity, as exposure to female scents or single ligands led to both the elimination of this cell type and alterations in olfactory behavior. That an all-or-none apparent sex difference in neuronal types is controlled by experience-even in a sensory system devoted to "innate" behaviors-highlights the extraordinary role of "nurture" in neural individuality.
机译:不同的个体表现出不同的行为,但是研究个体的神经元基础是一项艰巨的挑战。在这里,我们考虑了犁鼻器器官中的这个问题,犁鼻器器官是一种信息素检测上皮,含有数百种不同的神经元类型。使用光片显微镜,我们在每只动物中表征了17种生理定义类型的丰富度,总共记录了来自一百万个感觉神经元的信息。动物间的差异比偶然预测的要大得多,并且不同的生理细胞类型显示出明显的变异性模式。男性存在一种神经元类型,女性几乎不存在。出人意料的是,这种明显的性二态性是由可塑性产生的,因为暴露于女性气味或单一配体会导致这种细胞类型的消除和嗅觉行为的改变。在经验上控制了神经元类型的全部或完全的性别差异,甚至在致力于“先天”行为的感觉系统中也是如此,这突显了“培养”在神经个体中的非凡作用。

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