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Histogenetic Compartments of the Mouse Centromedial and Extended Amygdala Based on Gene Expression Patterns during Development

机译:基于发育过程中基因表达模式的小鼠离心和扩展杏仁核的组织遗传学区室。

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摘要

The amygdala controls emotional and social behavior and regulates instinctive reflexes such as defense and reproduction by way of descending projections to the hypothalamus and brainstem. The descending amygdalar projections are suggested to show a cortico-striato-pallidal organization similar to that of the basal ganglia ( Brain Res 886:113–164). To test this model we investigated the embryological origin and molecular properties of the mouse centromedial and extended amygdalar subdivisions, which constitute major sources of descending projections. We analyzed the distribution of key regulatory genes that show restricted expression patterns within the subpallium (Dlx5, Nkx2.1, Lhx6, Lhx7/8, Lhx9, Shh, and Gbx1), as well as genes considered markers for specific subpallial neuronal subpopulations. Our results indicate that most of the centromedial and extended amygdala is formed by cells derived from multiple subpallial subdivisions. Contrary to a previous suggestion, only the central—but not the medial—amygdala derives from the lateral ganglionic eminence and has striatal-like features. The medial amygdala and a large part of the extended amygdala (including the bed nucleus of the stria terminalis) consist of subdivisions or cell groups that derive from subpallial, pallial (ventral pallium), or extratelencephalic progenitor domains. The subpallial part includes derivatives from the medial ganglionic eminence, the anterior peduncular area, and possibly a novel subdivision, called here commissural preoptic area, located at the base of the septum and related to the anterior commissure. Our study provides a molecular and morphological foundation for understanding the complex embryonic origins and adult organization of the centromedial and extended amygdala.
机译:杏仁核通过下丘脑和脑干的下降投影来控制情绪和社交行为并调节本能反射,例如防御和生殖。建议下降的杏仁核投射显示出皮质-纹状体-苍白的组织,类似于基底神经节的组织(Brain Res 886:113-164)。为了测试该模型,我们研究了小鼠中央体和延伸的杏仁核细分的胚胎学起源和分子特性,这是下降预测的主要来源。我们分析了关键调节基因的分布,这些关键调节基因在亚皮层下(Dlx5,Nkx2.1,Lhx6,Lhx7 / 8,Lhx9,Shh和Gbx1)显示受限的表达模式,以及被认为是特定的睑下神经元亚群标记的基因。我们的结果表明,大多数的中央和扩展杏仁核是由多个颅下细分衍生的细胞形成的。与先前的建议相反,只有中央杏仁核而不是内侧杏仁核来源于外侧神经节隆起,并具有纹状体特征。内侧杏仁核和大部分的延伸杏仁核(包括终末纹的床核)由细分或细胞群组成,这些细分或细胞群来自下丘脑,丘脑(腹侧脑膜)或脑外祖细胞域。睑下部分包括来自内侧神经节隆起,前椎弓根区域的衍生物,可能还包括位于隔膜底部并与前连合有关的新的细分,这里称为连合视前区。我们的研究为理解复杂的胚胎起源和中央和扩​​展杏仁核的成年组织提供了分子和形态学基础。

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