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Immunolocalization of Receptor and Chemoreceptor Modules in the Sheep Vomeronasal Organ

机译:绵羊葡omeronal器官中受体和化学感受器模块的免疫悬垂性

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The vomeronasal organ (VNO) is the peripheral receptor organ of the accessory olfactory system, which is responsible for both sexual and innate behaviors. The degree of neuronal differentiation and maturation of the vomeronasal receptor cells together with the verification of the presence of the solitary chemoreceptor cells (SCCs) in the VNO of Corriedale sheep were assessed using immunofluorescence. A protein gene product 9.5 (PGP 9.5), which is a neuronal marker recognized to be expressed in most neurons of vertebrate species, an olfactory marker protein (OMP) that is precise for mature olfactory receptor cells, and lastly phospholipase C-beta(2) (PLC-beta(2)), a marker in the signal transduction pathway of SCCs, were all tested. The cell bodies and dendrites of almost all receptor cells in the sensory epithelium were strongly positive for PGP 9.5 and to a lesser extent for OMP. In the nonsensory wall, all cells were negative for both PGP 9.5 and OMP; however, some positive PGP 9.5 immunoreactive fibers were identified. For PLC-beta(2), only 1 basally situated SCC could be identified in the sensory epithelium. A higher number was demonstrated in the nonsensory wall. Corriedale sheep possess matured, fully differentiated vomeronasal receptor cells in their sensory wall, suggesting an appropriate pheromone perception. Additionally, the VNO in sheep may participate in the usual transduction mechanisms, though it is seemingly not a chemoreceptor organ. (C) 2018 S. Karger AG, Basel
机译:甘草组器官(VNO)是附件嗅觉系统的外周受体器官,其负责性和先天行为。使用免疫荧光评估使用免疫荧光评估血管受体细胞的神经元分化程度和血液受体细胞的验证验证Corriedale绵羊VNO中的孤立化学聚类细胞(SCCs)的存在。蛋白质基因产物9.5(PGP 9.5),其是在脊椎动物物种的大多数神经元中表达的神经元标记,嗅觉标记蛋白(OMP)精确用于成熟嗅觉受体细胞,最后磷脂酶C-β(2 )(PLC-β(2)),SCCS信号转导途径中的标记物都是测试。感觉上皮中几乎所有受体细胞的细胞体和树枝状细胞对于PGP 9.5强烈呈阳性,并且在较小程度上进行OMP。在非呼吸围墙中,所有细胞对PGP 9.5和OMP都是阴性的。然而,鉴定了一些阳性PGP 9.5免疫反应纤维。对于PLC-β(2),可以在感觉上皮中鉴定仅1个基础SCC。在非呼吁墙中证明了更高的数量。 Colriedale绵羊在其感官墙壁上具有成熟的,完全分化的葡聚糖受体细胞,表明适当的信息素感知。另外,绵羊中的VNO可以参与通常的转导机制,但似乎不是化学灰烬器官。 (c)2018年S. Karger AG,巴塞尔

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