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鉴定斑马鱼腹侧缰核作为哺乳动物外侧缰核的同源物。

Identification of the zebrafish ventral habenula as a homolog of the mammalian lateral habenula.

机构信息

Laboratory for Developmental Gene Regulation, RIKEN Brain Science Institute, Wako, Saitama 351-0198, Japan.

出版信息

J Neurosci. 2010 Jan 27;30(4):1566-74. doi: 10.1523/JNEUROSCI.3690-09.2010.

Abstract

The mammalian habenula consists of the medial and lateral habenulae. Recent behavioral and electrophysiological studies suggested that the lateral habenula plays a pivotal role in controlling motor and cognitive behaviors by influencing the activity of dopaminergic and serotonergic neurons. Despite the functional significance, manipulating neural activity in this pathway remains difficult because of the absence of a genetically accessible animal model such as zebrafish. To address the level of lateral habenula conservation in zebrafish, we applied the tract-tracing technique to GFP (green fluorescent protein)-expressing transgenic zebrafish to identify habenular neurons that project to the raphe nuclei, a major target of the mammalian lateral habenula. Axonal tracing in live and fixed fish showed projection of zebrafish ventral habenula axons to the ventral part of the median raphe, but not to the interpeduncular nucleus where the dorsal habenula projected. The ventral habenula expressed protocadherin 10a, a specific marker of the rat lateral habenula, whereas the dorsal habenula showed no such expression. Gene expression analyses revealed that the ventromedially positioned ventral habenula in the adult originated from the region of primordium lateral to the dorsal habenula during development. This suggested that zebrafish habenulae emerge during development with mediolateral orientation similar to that of the mammalian medial and lateral habenulae. These findings indicated that the lateral habenular pathways are evolutionarily conserved pathways and might control adaptive behaviors in vertebrates through the regulation of monoaminergic activities.

摘要

哺乳动物缰核由内侧缰核和外侧缰核组成。最近的行为和电生理研究表明,外侧缰核通过影响多巴胺能和血清素能神经元的活动,在控制运动和认知行为方面发挥着关键作用。尽管其功能意义重大,但由于缺乏像斑马鱼这样可遗传的动物模型,该途径的神经活动操作仍然很困难。为了确定斑马鱼中外侧缰核的保守程度,我们应用示踪技术在 GFP(绿色荧光蛋白)表达的转基因斑马鱼中鉴定了投射到中缝核的缰核神经元,中缝核是哺乳动物外侧缰核的主要靶点。活体和固定鱼中的轴突追踪显示,斑马鱼腹侧缰核的轴突投射到中缝核的腹侧部分,但不投射到背侧缰核投射到的脚间核。腹侧缰核表达了原钙黏蛋白 10a,这是大鼠外侧缰核的特异性标志物,而背侧缰核则没有这种表达。基因表达分析显示,成年斑马鱼腹侧缰核位于背侧缰核外侧的原基区域,呈腹侧至背侧定位。这表明,斑马鱼缰核在发育过程中沿着类似于哺乳动物内侧缰核和外侧缰核的中侧轴突出现。这些发现表明,外侧缰核途径是进化保守的途径,可能通过调节单胺能活动来控制脊椎动物的适应性行为。

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