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Correlation between membrane potential responses and tentacle movement in the dinoflagellate Noctiluca miliaris

机译:鞭毛夜光藻的膜电位响应与触手运动之间的相关性

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Membrane potential responses and tentacle movement of the marine dinoflagellate Noctiluca miliaris were recorded simultaneously and their time relationships were examined. The food-gathering tentacle of Noctiluca exhibited slow extension-flexion movements in association with the spontaneously recurring membrane potential responses termed the tentacle regulating potentials (TRPs). The flexion of the tentacle began during the slow depolarization of the TRPs. The rate of the flexion increased after the hyperpolarizing (negative) spike following the slow depolarization. The tentacle then extended slowly during the hyperpolarized level of the TRPs. A TRPs-associated flexion did not occur when the external Ca2+ ions were removed. On the contrary, the tentacle showed conspicuous flexion (coiling) when the external Ca2+ concentration was raised. In association with the stimulus-evoked action potential, which triggers bioluminescent flash (flash-triggering action potential; FTP), the tentacle coiled quickly. The FTP-associated coiling took place even in the Ca2+-deprived condition. The coupling mechanisms of the TRPs-associated and FTP-associated tentacle movements were compared, and their biological significance was discussed.
机译:同时记录了海洋鞭毛夜蛾夜光藻的膜电位响应和触手运动,并研究了它们的时间关系。夜光藻的聚集食物触手显示出缓慢的伸展屈曲运动,与自发的反复出现的膜触觉反应相关,称为触手调节电位(TRP)。在TRP缓慢去极化期间,触手开始弯曲。缓慢的去极化后,超极化(负)尖峰后屈曲率增加。然后在TRP的超极化水平期间,触手缓慢伸展。去除外部Ca2 +离子时,未发生与TRPs相关的弯曲。相反,当外部Ca 2+浓度升高时,触手显示出明显的弯曲(卷曲)。与刺激引起的动作电位(触发生物发光闪光)(触发闪光的动作电位; FTP)相关,触手迅速卷起。与FTP相关的卷取甚至发生在Ca2 +缺乏的情况下。比较了TRPs相关的和FTP相关的触手运动的耦合机制,并讨论了它们的生物学意义。

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