Department of Cell and Developmental Biology, University College London, London, United Kingdom.
Center for Brain Research, Medical University of Vienna, Vienna, Austria.
Elife. 2019 Aug 2;8:e47376. doi: 10.7554/eLife.47376.
Left-right asymmetries in the zebrafish habenular nuclei are dependent upon the formation of the parapineal, a unilateral group of neurons that arise from the medially positioned pineal complex. In this study, we show that both the left and right habenula are competent to adopt left-type molecular character and efferent connectivity upon the presence of only a few parapineal cells. This ability to impart left-sided character is lost in parapineal cells lacking Sox1a function, despite the normal specification of the parapineal itself. Precisely timed laser ablation experiments demonstrate that the parapineal influences neurogenesis in the left habenula at early developmental stages as well as neurotransmitter phenotype and efferent connectivity during subsequent stages of habenular differentiation. These results reveal a tight coordination between the formation of the unilateral parapineal nucleus and emergence of asymmetric habenulae, ensuring that appropriate lateralised character is propagated within left and right-sided circuitry.
斑马鱼缰核的左右不对称依赖于松果旁体的形成,松果旁体是一组起源于中置松果体复合体的单侧神经元。在这项研究中,我们表明,即使只有少数松果旁体细胞存在,左右缰核都有能力获得左侧的分子特征和传出连接。尽管松果旁体本身的正常特化,但缺乏 Sox1a 功能的松果旁体细胞丧失了赋予左侧特征的能力。精确定时的激光消融实验表明,松果旁体在早期发育阶段影响左侧缰核的神经发生,以及随后的缰核分化阶段的神经递质表型和传出连接。这些结果揭示了单侧松果旁核形成和不对称缰核出现之间的紧密协调,确保了左右侧电路中适当的侧化特征得以传播。