Segmentation of sensory and sympathetic ganglia: interactions between neural crest and somite cells.

Journal de physiologie Pub Date : 1991-01-01
C Kalcheim, R S Goldstein
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Abstract

The segmental pattern of peripheral ganglia in higher vertebrates is generated by interactions between neural crest and somite cells. Each mesodermal somite is subdivided into at least two distinct domains represented by its rostral and caudal halves. Most migratory pathways taken by neural crest cells in trunk regions of the axis, as well as the outgrowth of motoneuron fibers are restricted to the rostral domain of each somite. Experimental modification of the somites, achieved by constructing a mesoderm composed of multiple rostral half-somites, results in the formation of continuous and unsegmented nerves, dorsal root ganglia (DRG) and sympathetic ganglia (SG). In contrast, both neurites and crest cells are absent from a mesoderm composed of multiple-caudal half somites. However, the mechanisms responsible for gangliogenesis within the rostral half of the somite, appear to be different for DRG and SG. Vertebral development from the somites is also segmental. In implants of either multiple rostral or caudal somite-halves, the grafted mesoderm dissociates normally into sclerotome and dermomyotome. However, the morphogenetic capabilities of each somitic half differ. The lateral vertebral arch is continuous in the presence of caudal half-somite grafts and is virtually absent in rostral half-somite implants. Therefore, the rostrocaudal subdivision of the sclerotome determines the segmental pattern of neural development and is also important for the proper metameric development of the vertebrae.

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感觉神经节和交感神经节的分割:神经嵴和体突细胞之间的相互作用。
高等脊椎动物外周神经节的节段模式是由神经嵴与体突细胞相互作用产生的。每个中胚层体被细分为至少两个不同的域,由其吻侧和尾侧半部分代表。神经嵴细胞在中轴主干区域的大部分迁移途径以及运动神经元纤维的生长都局限于每个体体的吻侧区域。通过构建由多个吻侧半体组成的中胚层,实验修饰了体体,形成了连续的无节段神经,背根神经节(DRG)和交感神经节(SG)。相反,由多个尾状半体组成的中胚层没有神经突和嵴细胞。然而,对于DRG和SG来说,负责体体吻侧部分神经节形成的机制似乎是不同的。椎体从体发育也是节段性的。在多个吻侧或尾侧的半体植入体中,移植的中胚层通常分离成硬膜层和皮细胞层。然而,每个染色体一半的形态发生能力不同。侧椎弓在尾侧半体移植物中是连续的,而在吻侧半体移植物中几乎没有。因此,硬骨组的背侧-尾侧细分决定了神经发育的节段模式,对椎骨的正常发育也很重要。
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