首页> 外文期刊>The Journal of Comparative Neurology >Identical cellular distribution of all abundant neuropeptides in the major abdominal neurohemal system of an insect (Periplaneta Americana).
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Identical cellular distribution of all abundant neuropeptides in the major abdominal neurohemal system of an insect (Periplaneta Americana).

机译:在昆虫的主要腹部神经体系统中,所有丰富的神经肽的细胞分布相同。

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摘要

The median neurosecretory cells in abdominal ganglia of insects synthesize a number of putative hormones, which are abundant in the abdominal perisympathetic organs (PSOs). The peptide inventory of these prominent neurohemal release sites is best investigated in the American cockroach and strongly differs from that of head/thoracic neurohemal organs. In this study, we found a complete colocalization of all abundant neuropeptides in this hormonal system, including periviscerokinin-1 and -2, pyrokinin-5, YLSamide, VEAacid, and SKNacid. The first immunoreactive cells were detected on day 18 of embryonic development and already contained the complete set of peptides. By using antisera against the above-mentioned peptides, the development of this neurohormonal system could be studied and is described in detail. Subsequent electron microscopic immunogold stainings in PSO preparations revealed the costorage of PSO peptides in a single vesicle species. Surprisingly, all these peptides were found in axons containing clear vesicles, whereas all axons with dense core vesicles were totally devoid of immunoreactivity. Unlike the axons with dense core vesicles, immunostained axons ramify in the center of the PSO but exhibit only rare morphological signs of exocytosis. Instead, putative release sites of the clear vesicle-containing axons were detected peripherally to the PSOs, namely, on the hyperneural muscle. J. Comp. Neurol. 452:264-275, 2002.
机译:昆虫的腹部神经节中位神经分泌细胞合成了许多假定的激素,这些激素在腹部交感神经器官(PSOs)中含量很高。这些突出的神经血流释放部位的肽库在美国蟑螂中得到了最好的研究,与头/胸神经血细胞器官的肽库有很大不同。在这项研究中,我们发现了该激素系统中所有丰富的神经肽的完整共定位,包括percercercerokinin-1和-2,pyrookinin-5,YLSamide,VEAacid和SKNacid。在胚胎发育的第18天检测到第一个免疫反应性细胞,并且已经包含完整的肽组。通过使用针对上述肽的抗血清,可以研究和详细描述这种神经激素系统的发育。随后在PSO制剂中进行电子显微镜免疫金染色,发现单个囊泡物种中PSO肽的成本不足。出乎意料的是,所有这些肽均在含有透明囊泡的轴突中发现,而所有具有密集核心囊泡的轴突完全没有免疫反应性。与具有密集的核心囊泡的轴突不同,免疫染色的轴突在PSO的中心分支,但仅表现出罕见的胞吐形态迹象。取而代之的是,在PSO的外围,即在高神经肌肉上,检测到了含有透明囊泡的轴突的假定释放位点。 J.比较神经元。 452:​​264-275,2002。

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