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首页> 外文期刊>Parasitology Research >Architecture of the nervous system in metacercariae of Diplostomum pseudospathaceum Niewiadomska, 1984 (Digenea)
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Architecture of the nervous system in metacercariae of Diplostomum pseudospathaceum Niewiadomska, 1984 (Digenea)

机译:Diveudospathaceum Niewiadomska,1984(Digenea)德赛德莫克西宫神经系统的建筑学

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The development of metacercariae of Diplostomum pseudospathaceum Niewiadomska, 1984 is accompanied by profound morphological transformations often characterized as metamorphosis, which makes these metacercariae an interesting case for studying the morphogenesis of the digenean nervous system. Although the nervous system of D. pseudospathaceum is one of the most extensively studied among digeneans, there are still gaps in our knowledge regarding the distribution patterns of some neuroactive substances, most notably neuropeptides. The present study addresses these gaps by studying pre-infective metacercariae of D. pseudospathaceum using immunochemical staining and confocal microscopy to characterize the distribution patterns of serotonin (5-HT) and two major groups of flatworm neuropeptides, FMRFamide-related (FaRPs) and substance P-related (SP) peptides. The general morphology of the nervous system was examined with antibodies to alpha-tubulin. The nervous system of the metacercariae was shown to conform to the most common morphology of the nervous system in the hermaphroditic generation, with three pairs of posterior nerve cords and four pairs of anterior nerves. The patterns of FaRP- and 5-HT immunoreactivity (IR) were similar to those revealed in earlier studies by cholinesterase activity, which is in accordance with the known role of these neurotransmitters in controlling muscle activity in flatworms. The SP-IR nervous system was significantly different and consisted of mostly bipolar cells presumably acting as mechanoreceptors. The architecture of the nervous system in D. pseudospathaceum metacercariae is discussed in comparison to that in cercariae of D. pseudospathaceum and metacercariae of related digenean species.
机译:1984年凭证PseudoveMumska的Metacercariae的发展伴随着深刻的形态转化,通常具有变态的形态转化,这使得这些Metacercariae成为研究DigeNean神经系统的形态发生的有趣案例。虽然D.Pseudoshaceum的神经系统是DigeNeans中最广泛的研究之一,但我们对一些神经活性物质的分布模式,最常见的神经肽的知识仍然存在差距。本研究通过使用免疫化学染色和共聚焦显微镜研究D.Pseudospathaceum的D.Pseudospathaceum的预感染性梅西术来满足这些差距,以表征血清素(5-HT)的分布模式和两组骨髓神经肽,FMRFamide相关(FARP)和物质p型(sp)肽。用α-小管蛋白的抗体检查神经系统的一般形态。显示雌雄蚴的神经系统符合雌雄同体发电中神经系统的最常见形态,用三对后神经帘线和四对前神经。 Farp-and 5-Ht免疫反应性(IR)的模式类似于胆碱酯酶活性在早期研究中揭示的那些,这与这些神经递质在扁虫中控制肌肉活性的已知作用。 SP-IR神经系统显着不同,并且由大多数双极细胞组成,这可能是机械感受器。与相关的DigeNean物种的D.Pseudostavateum和Metacercariae的Cercariae讨论了D.Pseudostaveum型糖尿病神经系统的结构。

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