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雌性小鼠中从主嗅球到“犁鼻器”杏仁核的直接投射会选择性地对来自雄性的挥发性信息素作出反应。

A direct main olfactory bulb projection to the 'vomeronasal' amygdala in female mice selectively responds to volatile pheromones from males.

作者信息

Kang Ningdong, Baum Michael J, Cherry James A

机构信息

Department of Biology, Boston University, Boston, MA 02215, USA.

出版信息

Eur J Neurosci. 2009 Feb;29(3):624-34. doi: 10.1111/j.1460-9568.2009.06638.x. Epub 2009 Jan 28.

Abstract

The main olfactory system, like the accessory olfactory system, responds to pheromones involved in social communication. Whereas pheromones detected by the accessory system are transmitted to the hypothalamus via the medial ('vomeronasal') amygdala, the pathway by which pheromones are detected and transmitted by the main system is not well understood. We examined in female mice whether a direct projection from mitral/tufted (M/T) cells in the main olfactory bulb (MOB) to the medial amygdala exists, and whether medial amygdala-projecting M/T cells are activated by volatile urinary odors from conspecifics or a predator (cat). Simultaneous anterograde tracing using Phaseolus vulgaris leucoagglutinin and Fluoro-Ruby placed in the MOB and accessory olfactory bulb (AOB), respectively, revealed that axons of MOB M/T cells projected to superficial laminae of layer Ia in anterior and posterodorsal subdivisions of the medial amygdala, whereas projection neurons from the AOB sent axons to non-overlapping, deeper layer Ia laminae of the same subdivisions. Placement of the retrograde tracer cholera toxin B into the medial amygdala labeled M/T cells that were concentrated in the ventral MOB. Urinary volatiles from male mice, but not from female conspecifics or cat, induced Fos in medial amygdala-projecting MOB M/T cells of female subjects, suggesting that information about male odors is transmitted directly from the MOB to the 'vomeronasal' amygdala. The presence of a direct MOB-to-medial amygdala pathway in mice and other mammals could enable volatile, opposite-sex pheromones to gain privileged access to diencephalic structures that control mate recognition and reproduction.

摘要

主嗅觉系统与副嗅觉系统一样,对参与社会交流的信息素作出反应。副嗅觉系统检测到的信息素通过内侧(“犁鼻器”)杏仁核传递至下丘脑,而主嗅觉系统检测和传递信息素的途径尚不清楚。我们研究了雌性小鼠中,主嗅球(MOB)的二尖瓣/簇状(M/T)细胞是否直接投射至内侧杏仁核,以及投射至内侧杏仁核的M/T细胞是否会被同种个体或捕食者(猫)的挥发性尿液气味激活。分别将菜豆白细胞凝集素和荧光红宝石置于MOB和副嗅球(AOB)中进行同步顺行追踪,结果显示,MOB的M/T细胞轴突投射至内侧杏仁核前侧和后背部亚区Ia层的浅层,而AOB的投射神经元将轴突发送至同一亚区不重叠的、更深的Ia层。将逆行示踪剂霍乱毒素B注入内侧杏仁核,标记了集中在腹侧MOB的M/T细胞。雄性小鼠的尿液挥发物而非雌性同种个体或猫的尿液挥发物,可诱导雌性个体中投射至内侧杏仁核的MOB M/T细胞产生Fos,这表明有关雄性气味的信息直接从MOB传递至“犁鼻器”杏仁核。小鼠和其他哺乳动物中存在从MOB到内侧杏仁核的直接通路,这可能使挥发性的异性信息素能够优先进入控制配偶识别和繁殖的间脑结构。

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