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首页> 外文期刊>The Biological Bulletin >Neuronal form in the central nervous system of the tadpole larva of the ascidian Ciona intestinalis
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Neuronal form in the central nervous system of the tadpole larva of the ascidian Ciona intestinalis

机译:海豚肠ona的中枢神经系统中的神经元形式

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The dorsal tubular central nervous system (CNS) of the ascidian tadpole larva is a diagnostic feature by which the chordate affinities of this group, as a whole, are recognized. We have used two methods to identify larval neurons of Ciona intestinalis. The first is serial electron microscopy (EM) as part of a dedicated study of the visceral ganglion (1), and the second is the transient transfection of neural plate progeny with green fluorescent protein (GFP) (2), to visualize the soma and its neurites of individual neurons in whole-mounted larvae of C. intestinalis. Our observations reveal that ascidian larval neurons are simple inform, with a single axonal neurite arising from a soma that is either monopolar or has only very few, relatively simple neurites arising from it, as part of a presumed dendritic arbor. Somata in the visceral ganglion giving rise to axons descending in the caudal nerve cord are presumed to be those of motor neurons. [References: 31]
机译:t幼虫的背侧管状中枢神经系统(CNS)是诊断特征,可从整体上识别该组的草酸盐亲和力。我们已经使用两种方法来识别Ciona intestinalis的幼虫神经元。第一个是作为内脏神经节专门研究的一部分的串行电子显微镜(EM)(1),第二个是用绿色荧光蛋白(GFP)瞬时转染神经板后代(2),以可视化躯体和其在整个肠小肠虫幼虫中的单个神经元神经突。我们的观察结果表明,海鞘幼虫神经元是简单的信息,是由单极体或仅由极少数体产生的相对简单的神经突的体形成的单个轴突神经突,作为假定的树突状乔木的一部分。内脏神经节中导致尾神经索中轴突下降的索马塔被认为是运动神经元的索马塔。 [参考:31]

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