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烟草天蛾(Manduca sexta)促前胸腺激素分泌神经元中依赖滞育的变化。

Diapause-dependent changes in prothoracicotropic hormone-producing neurons of the tobacco hornworm, Manduca sexta.

作者信息

Hartfelder K, Hanton W K, Bollenbacher W E

机构信息

Zoologisches Institut, Universität Tübingen, Germany.

出版信息

Cell Tissue Res. 1994 Jul;277(1):69-78. doi: 10.1007/BF00303082.

Abstract

The prothoracicotropic hormone (PTTH), which stimulates ecdysteroid synthesis in the prothoracic glands, is produced, in the dorso-lateral protocerebrum of Manduca sexta, by paired peptidergic neurons, the lateral neurosecretory cell group III (L-NSC III). Our study revealed ultrastructural features of L-NSC III, identified by immunogold labeling, and compared developing and diapause states. In developing and early-diapause pupae, L-NSC III soma ultrastructure is similar and is characterized by numerous clusters of neurosecretory granules (NSG) and an extensive trophospongium formed by satellite-glial cells. However, as diapause progresses, the ultrastructure changes, with the NSG becoming concentrated into large clusters separated by highly organized rough endoplasmic reticulum. Most conspicuous is a substantial reduction in the number of Golgi complexes and the glial trophospongium, and the presence of stacked plasma membrane separating the glia and neuron somata. The deep-diapause soma also has abundant glycogen deposits and autophagic vacuoles. With diapause termination, this morphology reverts to the nondiapause ultrastructure within three days, i.e. just before PTTH release that evokes development to the adult. During PTTH release the abundance of NSG in the soma does not change, suggesting that NSG depletion in the perikarya is not a marker for neurosecretion by the L-NSC III.

摘要

促前胸腺激素(PTTH)能刺激前胸腺合成蜕皮甾体,它由烟草天蛾背外侧原脑的成对肽能神经元——外侧神经分泌细胞群III(L-NSC III)产生。我们的研究揭示了通过免疫金标记鉴定的L-NSC III的超微结构特征,并比较了发育状态和滞育状态。在发育中的蛹和早期滞育的蛹中,L-NSC III胞体的超微结构相似,其特征是有许多神经分泌颗粒(NSG)簇,以及由卫星胶质细胞形成的广泛的营养海绵体。然而,随着滞育的进展,超微结构发生变化,NSG聚集形成大簇,被高度组织化的粗面内质网隔开。最明显的是高尔基体复合体和胶质营养海绵体数量大幅减少,以及存在分隔胶质细胞和神经元胞体的堆叠质膜。深度滞育的胞体还具有丰富的糖原沉积和自噬泡。随着滞育终止,这种形态在三天内恢复到非滞育超微结构,即在PTTH释放引发成虫发育之前。在PTTH释放期间,胞体中NSG的丰度没有变化,这表明核周体中NSG的消耗不是L-NSC III神经分泌的标志

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