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Building the central complex of the grasshopper Schistocerca gregaria: temporal topology organizes the neuroarchitecture of the w, x, y, z tracts

机译:建立蝗虫Schistocerca gregaria的中央复合体:时间拓扑组织w,x,y,z区域的神经体系结构

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The central complex is a brain specific structure involved in multimodal information processing and in coordinating motor behaviour. It possesses a highly organized neuroarchitecture, which is remarkably conserved across insect species, A prominent feature of this neuroarchitectuie is the stereotypic projection of axons from clusters of neurons in the pars intercerebralis to the central body via the so-called w, x, y and z tracts. Despite extensive analyses of this neuroarchitecture in adults, littleis known about its ontogeny in any insect. In this paper we use the expression pattern of the segment polarity gene engrailed to identify those neuroblasts belonging to the protocerebrum of the early embryonic brain of the grasshopper Schistocerca gregaria. We present a new map for this brain region in which the 95 protocerebral neuroblasts in each hemisphere are organized into seven rows, as they are in the neuromeres of the ventral nerve cord. We then identify a subset of four of these neuroblasts asbeing the progenitor cells for four clusters of neurons, some of whose axons we show project via discrete tracts (w, x, y, z) into the central complex. These tracts begin to form prior to 39% of embryogenesis. We show further, that the cells from one ofthese clusters (the Z cluster) are organized according to age, and direct axons topologically according to age into the appropriate z tract. This pattern is repeated in each of the other three clusters, thus establishing a clonally based modular systemof fibre tracts consistent with the model proposed for this brain region in the adult.
机译:中央复合体是参与多模式信息处理和协调运动行为的大脑特定结构。它具有高度组织化的神经体系结构,在昆虫物种中非常保守。这种神经体系结构的一个显着特征是轴突的定型投影从轴间部的神经元簇通过所谓的w,x,y和z片。尽管已经对该成虫的神经结构进行了广泛的分析,但对于任何昆虫的其个体发育都知之甚少。在本文中,我们使用参与的区段极性基因的表达模式来鉴定那些属于蚱Sch血吸虫早期胚胎脑原脑的神经母细胞。我们为这个大脑区域提供了一个新的地图,其中每个半球中的95个前脑神经母细胞被组织成七行,就像它们在腹神经索的神经纤维中一样。然后,我们将其中四个成神经细胞的子集确定为四个神经元簇的祖细胞,我们显示其中一些轴突通过离散束(w,x,y,z)投射到中央复合物中。这些管道在胚胎发生39%之前就开始形成。我们进一步证明,来自这些簇之一(Z簇)的细胞根据年龄进行组织,并根据年龄将轴突拓扑学地引导到适当的Z轴中。在其他三个集群中的每个集群中都重复这种模式,从而建立了基于克隆的纤维束模块化系统,该系统与针对成人的该脑区域提出的模型相一致。

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