首页> 外文期刊>Cell and Tissue Research >Mixed cholinergic/glutamatergic neuromuscular innervation of Onychophora: a combined histochemical/electrophysiological study.
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Mixed cholinergic/glutamatergic neuromuscular innervation of Onychophora: a combined histochemical/electrophysiological study.

机译:甲癣的胆碱能/谷氨酸能神经肌肉混合神经混合:组织化学/电生理研究。

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摘要

Morphological and molecular phylogenetic data show that the Onychophora are close relatives of the Arthropoda. However, onychophoran neuromuscular junctions have been reported to employ acetylcholine, as in annelids, nematodes, and other bilaterians, rather than glutamate, as in arthropods. Here, we show that the large longitudinal muscles of Peripatoides respond indeed only to acetylcholine, whereas the oblique and ring muscles of the body wall are sensitive both to acetylcholine and to L-glutamate. Moreover, cytochemical staining reveals both acetylcholinesterase- and glutamate-positive synaptic boutons on oblique and ring muscles. These novel findings agree with a phylogenetic position of onychophorans basal to that of the arthropods. Although the glutamatergic phenotype of excitatory neuromuscular transmission may be a characteristic feature of arthropods and present even in a subset of onychophoran motor neurons, the motor neurons of the longitudinal muscles still retain the cholinergic phenotype typical for annelids and other taxa.
机译:形态和分子系统发育数据表明,甲虫是节肢动物的近亲。但是,据报道甲虫神经肌肉接头采用乙酰胆碱,如在肘节虫,线虫和其他生物中,而不是象节肢动物那样采用谷氨酸。在这里,我们显示,Peripatoides的大型纵向肌肉确实仅对乙酰胆碱有反应,而体壁的斜肌和环肌对乙酰胆碱和L-谷氨酸敏感。此外,细胞化学染色揭示了斜肌和环肌上的乙酰胆碱酯酶和谷氨酸阳性突触钮扣。这些新颖的发现与节肢动物基础的节肢动物的系统发育位置相吻合。尽管兴奋性神经肌肉传递的谷氨酸能表型可能是节肢动物的特征,甚至存在于甲足动物运动神经元的一个子集中,但纵肌的运动神经元仍保留了典型的突触和其他类群的胆碱能表型。

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