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烟草天蛾大脑神经内分泌系统的蜕变

Metamorphosis of the cerebral neuroendocrine system in the moth Manduca sexta.

作者信息

Copenhaver P F, Truman J W

出版信息

J Comp Neurol. 1986 Jul 8;249(2):186-204. doi: 10.1002/cne.902490206.

Abstract

We have examined the morphology and neuronal elements of the cerebral neuroendocrine system in the larval, pupal, and adult stages of the moth Manduca sexta with a variety of neuroanatomical techniques. The larval brain contains several discrete groups of neurosecretory and non-neurosecretory cells that project to the associated neurohemal organs (the corpora cardiaca-allata complex, or CC-CA) and to a variety of more peripheral structures. A previously undescribed set of cells in the subesophageal ganglion have also been found that project out the neurosecretory nerves. During metamorphosis, the cerebral neuroendocrine system undergoes a dramatic structural reorganization, including the reduction or loss of many larval nerves and a repositioning of the cell groups and their dendritic fields. Despite these changes, most of its central elements are retained. In addition, by the completion of adult development a new cluster of cells can be found on either side of the dorsal midline of the brain. We have also determined the relative contributions of the different cell groups to the moth neuroendocrine system by intracellular iontophoresis of dye into individual cells. Within the dorsal protocerebrum, five separate morphological types of cells can be recognized, each with a distinctive pattern of dendritic arborization in the brain and terminal neurohemal processes that project to the CC, the CA, the aorta, or to a combination of these regions. The large intrinsic cells of the CC have also been filled, revealing an unusual set of morphological features in these peripheral neurosecretory cells.

摘要

我们运用多种神经解剖学技术,研究了烟草天蛾幼虫、蛹和成虫阶段大脑神经内分泌系统的形态学和神经元成分。幼虫大脑包含几组离散的神经分泌细胞和非神经分泌细胞,它们投射到相关的神经血器官(心侧体 - 咽侧体复合体,即CC - CA)以及各种更外周的结构。在咽下神经节中还发现了一组先前未描述的细胞,它们发出神经分泌神经。在变态过程中,大脑神经内分泌系统经历了显著的结构重组,包括许多幼虫神经的减少或丧失,以及细胞群及其树突场的重新定位。尽管有这些变化,其大部分核心成分得以保留。此外,在成虫发育完成时,可在大脑背中线两侧发现一组新的细胞簇。我们还通过将染料细胞内离子导入单个细胞,确定了不同细胞群对烟草天蛾神经内分泌系统的相对贡献。在背侧原脑内,可以识别出五种不同形态类型的细胞,每种细胞在大脑中具有独特的树突分支模式,以及投射到心侧体(CC)、咽侧体(CA)、主动脉或这些区域组合的终末神经血过程。心侧体的大型固有细胞也已被填充,揭示了这些外周神经分泌细胞一组不同寻常的形态特征。

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