Benito-Gutiérrez Elia, Illas Margarita, Comella Joan X, Garcia-Fernàndez Jordi
Departament de Genètica, Facultat de Biologia, Universitat de Barcelona, Spain.
Brain Res Bull. 2005 Sep 15;66(4-6):518-21. doi: 10.1016/j.brainresbull.2005.03.007. Epub 2005 Apr 2.
The cephalochordate amphioxus is the closest living relative of the vertebrates. The anatomy and development of the amphioxus nervous system is giving insights into the basic chordate neural organisation, prior to the increase in neural complexity that characterised the origin of vertebrates. We have analysed the expression of the pan-neural marker AmphiElav in the Florida lancelet (Branchiostoma floridae) through development and up to larval stages. AmphiElav is expressed in the developing neural tube with particular temporal and spatial dynamics that correlate with neuronal differentiation. In addition, AmphiElav is expressed in isolated epidermal cells from mid-neurula embryos. This epidermal expression probably corresponds to precursors of sensory neurons. Together with data from other neural markers, we discuss the evolutionary relevance of these neural precursors to the origin of some of the most dramatic vertebrate inventions, neural crests and placodes.
头索动物文昌鱼是现存与脊椎动物亲缘关系最近的生物。在脊椎动物起源所特有的神经复杂性增加之前,文昌鱼神经系统的解剖结构和发育情况正在为了解基本的脊索动物神经组织提供线索。我们分析了泛神经标志物AmphiElav在佛罗里达文昌鱼(佛罗里达文昌鱼)发育过程直至幼虫阶段的表达情况。AmphiElav在发育中的神经管中表达,具有与神经元分化相关的特定时空动态。此外,AmphiElav在神经胚中期胚胎的孤立表皮细胞中表达。这种表皮表达可能对应于感觉神经元的前体。结合来自其他神经标志物的数据,我们讨论了这些神经前体与一些最显著的脊椎动物创新——神经嵴和基板的起源在进化上的相关性。