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Electrophysiology of the rhythmic defecation program in nematode Heterorhabditis megidis

机译:线虫节律性杂剧性节律性排便程序的电生理学

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摘要

The nervous system controls most rhythmic behaviors, with a remarkable exception. In Caenorhabditis elegans periodic defecation rhythm does not appear to involve the nervous system. Such oscillations are studied in detail with genetic and molecular biology tools. The small size of C. elegans cells impairs the use of standard electrophysiological methods. We studied a similar rhythmic pacemaker in the noticeably larger gut cells of Heterorhabditis megidis nematode. H. megidis defecation cycle is driven by a central pattern generator (CPG) associated with unusual all-or-none hyper-polarization “action potential”. The CPG cycle period depends on the membrane potential and CPG cycling also persisted in experiments where the membrane potential of gut cells was continuously clamped at steady voltage levels. The usual excitable tissue description does not include the endoderm or imply the generation of hyper-polarization spikes. The nematode gut cells activity calls for a reevaluation of the excitable cells definition.
机译:除了明显的例外,神经系统控制着大多数的节律行为。在秀丽隐杆线虫中,周期性排便节律似乎不涉及神经系统。用遗传和分子生​​物学工具详细研究了这种振荡。秀丽隐杆线虫细胞的小尺寸妨碍了标准电生理方法的使用。我们研究了类似的节律性起搏器,它在巨大的线虫杂种猪线虫的肠道细胞中起作用。麦加迪丝菌的排便周期由与异常的全极化或全极化超极化“动作电位”相关的中央模式发生器(CPG)驱动。 CPG循环周期取决于膜电位,CPG循环在实验中也持续存在,在该实验中,肠道细胞的膜电位连续固定在稳定的电压水平。通常的兴奋性组织描述不包括内胚层,也不暗示超极化尖峰的产生。线虫肠道细胞的活性要求对可兴奋细胞的定义进行重新评估。

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