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The ventral habenulae of zebrafish develop in prosomere 2 dependent on Tcf7l2 function

机译:斑马鱼腹鳍发育在prosomere 2中,取决于Tcf7l2的功能

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Background The conserved habenular neural circuit relays cognitive information from the forebrain into the ventral mid- and hindbrain. In zebrafish, the bilaterally formed habenulae in the dorsal diencephalon are made up of the asymmetric dorsal and symmetric ventral habenular nuclei, which are homologous to the medial and lateral nuclei respectively, in mammals. These structures have been implicated in various behaviors related to the serotonergic/dopaminergic neurotransmitter system. The dorsal habenulae develop adjacent to the medially positioned pineal complex. Their precursors differentiate into two main neuronal subpopulations which differ in size across brain hemispheres as signals from left-sided parapineal cells influence their differentiation program. Unlike the dorsal habenulae and despite their importance, the ventral habenulae have been poorly studied. It is not known which genetic programs underlie their development and why they are formed symmetrically, unlike the dorsal habenulae. A main reason for this lack of knowledge is that the vHb origin has remained elusive to date. Results To address these questions, we applied long-term 2-photon microscopy time-lapse analysis of habenular neural circuit development combined with depth color coding in a transgenic line, labeling all main components of the network. Additional laser ablations and cell tracking experiments using the photoconvertible PSmOrange system in GFP transgenic fish show that the ventral habenulae develop in prosomere 2, posterior and lateral to the dorsal habenulae in the dorsal thalamus. Mutant analysis demonstrates that the ventral habenular nuclei only develop in the presence of functional Tcf7l2, a downstream modulator of the Wnt signaling cascade. Consistently, photoconverted thalamic tcf7l2exl/exl mutant cells do not contribute to habenula formation. Conclusions We show in vivo that dorsal and ventral habenulae develop in different regions of prosomere 2. In the process of ventral habenula formation, functional tcf7l2 gene activity is required and in its absence, ventral habenular neurons do not develop. Influenced by signals from parapineal cells, dorsal habenular neurons differentiate at a time at which ventral habenular cells are still on their way towards their final destination. Thus, our finding may provide a simple explanation as to why only neuronal populations of the dorsal habenulae differ in size across brain hemispheres.
机译:背景保守的唇状神经回路将认知信息从前脑传递到腹中和后脑。在斑马鱼中,背侧双脑中双侧形成的ha形由不对称的背侧和对称的腹形ha核组成,它们在哺乳动物中分别与内侧和外侧核同源。这些结构已经牵涉到与血清素能/多巴胺能神经递质系统有关的各种行为。背侧哈贝努尔在内侧定位的松果体附近发育。它们的前体分化为两个主要的神经元亚群,它们在大脑半球的大小各不相同,这是由于来自左侧副脚膜细胞的信号影响了它们的分化程序。与背侧ha管不同,尽管它们很重要,但腹侧ha管的研究很少。不知道哪些遗传程序是它们发育的基础,以及为什么它们对称地形成,而不像背对背钩虫那样。缺乏知识的主要原因是迄今为止,vHb的来源仍然难以捉摸。结果为了解决这些问题,我们在转基因品系中应用了对2-状神经回路发育的长期2光子显微镜延时分析与深度颜色编码相结合,标记了网络的所有主要成分。在GFP转基因鱼中使用光变PSmOrange系统进行的其他激光消融和细胞跟踪实验表明,腹侧哈贝努尔在背侧丘脑背侧哈贝努尔的前2号,后核和左右侧发育。突变分析表明,腹侧ben状核仅在功能性Tcf712(Wnt信号级联的下游调节剂)存在下发展。一致地,光转化的丘脑tcf7l2exl / exl突变细胞不参与羽管的形成。结论我们在体内显示了在前臀2的不同区域发育背侧和腹侧ha管。在腹侧ben管形成过程中,需要功能性tcf7l2基因活性,并且在不存在的情况下,腹侧ha形神经元不会发育。在来自腹膜上层细胞的信号的影响下,背侧differentiate状神经元在腹侧ha状细胞仍在朝着其最终目的地的途中发生分化。因此,我们的发现可以提供一个简单的解释,说明为什么仅大脑背半球的背侧ben神经元种群在大小上会有所不同。

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