Universite Paul Sabatier, Centre de Biologie du Developpement,Toulouse, France.
Dev Neurobiol. 2012 Mar;72(3):269-81. doi: 10.1002/dneu.20885.
How does left-right asymmetry develop in the brain and how does the resultant asymmetric circuitry impact on brain function and lateralized behaviors? By enabling scientists to address these questions at the levels of genes, neurons, circuitry and behavior,the zebrafish model system provides a route to resolve the complexity of brain lateralization. In this review, we present the progress made towards characterizing the nature of the gene networks and the sequence of morphogenetic events involved in the asymmetric development of zebrafish epithalamus. In an attempt to integrate the recent extensive knowledge into a working model and to identify the future challenges,we discuss how insights gained at a cellular/developmental level can be linked to the data obtained at a molecular/genetic level. Finally, we present some evolutionary thoughts and discuss how significant discoveries made in zebrafish should provide entry points to better understand the evolutionary origins of brain lateralization.
左右不对称性是如何在大脑中发展的,以及由此产生的不对称性电路如何影响大脑功能和偏侧化行为?斑马鱼模型系统通过使科学家能够在基因、神经元、电路和行为水平上解决这些问题,为解决大脑偏侧化的复杂性提供了一条途径。在这篇综述中,我们介绍了在描述斑马鱼上丘的基因网络的性质和形态发生事件的顺序方面所取得的进展。为了将最近的广泛知识整合到一个工作模型中,并确定未来的挑战,我们讨论了如何将细胞/发育水平上的见解与分子/遗传水平上获得的数据联系起来。最后,我们提出了一些进化方面的思考,并讨论了在斑马鱼中取得的重大发现如何为更好地理解大脑偏侧化的进化起源提供切入点。