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德国蜚蠊副髓质的免疫细胞化学特征

Immunocytochemical characterization of the accessory medulla in the cockroach Leucophaea maderae.

作者信息

Petri B, Stengl M, Würden S, Homberg U

机构信息

Institut für Zoologie/Bio I, Universität Regensburg, D-93040 Regensburg, Germany.

出版信息

Cell Tissue Res. 1995 Oct;282(1):3-19. doi: 10.1007/BF00319128.

Abstract

Several lines of evidence suggest that pigment-dispersing hormone-immunoreactive neurons with ramifications in the accessory medulla are involved in the circadian system of insects. The present study provides a detailed analysis of the anatomical and neurochemical organization of the accessory medulla in the brain of the cockroach Leucophaea maderae. We show that the accessory medulla is compartmentalized into central dense nodular neuropil surrounded by a shell of coarse fibers. It is innervated by neurons immunoreactive to antisera against serotonin and the neuropeptides allatostatin 7, allatotropin, corazonin, gastrin/cholecystokinin, FMRFamide, leucokinin I, and pigment-dispersing hormone. Some of the immunostained neurons appear to be local neurons of the accessory medulla, whereas others connect this neuropil to various brain areas, including the lamina, the contralateral optic lobe, the posterior optic tubercles, and the superior protocerebrum. Double-label experiments show the colocalization of immunoreactivity against pigment-dispersing hormone with compounds related to FMRFamide, serotonin, and leucokinin I. The neuronal and neurochemical organization of the accessory medulla is consistent with the current hypothesis for a role of this brain area as a circadian pacemaking center in the insect brain.

摘要

多项证据表明,在副髓质中有分支的色素分散激素免疫反应性神经元参与了昆虫的昼夜节律系统。本研究对 maderae 蜚蠊大脑中副髓质的解剖学和神经化学组织进行了详细分析。我们发现,副髓质被分隔为中央致密的结节状神经纤维网,周围环绕着一层粗纤维。它接受对血清素、神经肽抑咽侧体素 7、促咽侧体素、心钠素、胃泌素/胆囊收缩素、FMRF 酰胺、亮氨酸激肽 I 和色素分散激素抗血清呈免疫反应的神经元的支配。一些免疫染色的神经元似乎是副髓质的局部神经元,而其他神经元则将这个神经纤维网与包括视叶、对侧视叶、后视结节和前脑上部在内的各个脑区相连。双标记实验显示,色素分散激素免疫反应性与 FMRF 酰胺、血清素和亮氨酸激肽 I 相关化合物共定位。副髓质的神经元和神经化学组织与目前认为该脑区作为昆虫大脑昼夜节律起搏中心的假设一致。

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