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副嗅球和内侧杏仁核中 Foxp2 和 Dbx1 谱系神经元的连接和分子特征。

Connectivity and molecular profiles of Foxp2- and Dbx1-lineage neurons in the accessory olfactory bulb and medial amygdala.

机构信息

Center for Neuroscience Research, Children's Research Institute, Children's National Hospital, Washington, District of Columbia, USA.

Department of Pharmacology, University of Michigan Medical School, Ann Arbor, Michigan, USA.

出版信息

J Comp Neurol. 2024 Feb;532(2):e25545. doi: 10.1002/cne.25545. Epub 2023 Oct 17.

Abstract

In terrestrial vertebrates, the olfactory system is divided into main (MOS) and accessory (AOS) components that process both volatile and nonvolatile cues to generate appropriate behavioral responses. While much is known regarding the molecular diversity of neurons that comprise the MOS, less is known about the AOS. Here, focusing on the vomeronasal organ (VNO), the accessory olfactory bulb (AOB), and the medial amygdala (MeA), we reveal that populations of neurons in the AOS can be molecularly subdivided based on their ongoing or prior expression of the transcription factors Foxp2 or Dbx1, which delineate separate populations of GABAergic output neurons in the MeA. We show that a majority of AOB neurons that project directly to the MeA are of the Foxp2 lineage. Using single-neuron patch-clamp electrophysiology, we further reveal that in addition to sex-specific differences across lineage, the frequency of excitatory input to MeA Dbx1- and Foxp2-lineage neurons differs between sexes. Together, this work uncovers a novel molecular diversity of AOS neurons, and lineage and sex differences in patterns of connectivity.

摘要

在陆生脊椎动物中,嗅觉系统分为主要(MOS)和辅助(AOS)两个部分,它们分别处理挥发性和非挥发性线索,以产生适当的行为反应。虽然人们对构成 MOS 的神经元的分子多样性有了很多了解,但对 AOS 了解较少。在这里,我们专注于犁鼻器(VNO)、副嗅球(AOB)和杏仁内侧核(MeA),揭示了 AOS 中的神经元群体可以根据其持续或先前表达的转录因子 Foxp2 或 Dbx1 进行分子细分,这些转录因子界定了 MeA 中 GABA 能输出神经元的不同群体。我们表明,直接投射到 MeA 的大多数 AOB 神经元都属于 Foxp2 谱系。使用单细胞膜片钳电生理学,我们进一步表明,除了谱系之间存在性别特异性差异外,MeA Dbx1 和 Foxp2 谱系神经元的兴奋性输入频率在性别之间也存在差异。总之,这项工作揭示了 AOS 神经元的一种新的分子多样性,以及连接模式的谱系和性别差异。

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Development and function of the medial amygdala.内侧杏仁核的发育与功能。
Trends Neurosci. 2025 Jan;48(1):22-32. doi: 10.1016/j.tins.2024.11.004. Epub 2024 Dec 12.

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