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栉水母侧腕水母中纤毛运动反应的电生理控制

Electrophysiological control of ciliary motor responses in the ctenophore Pleurobrachia.

作者信息

Moss A G, Tamm S L

出版信息

J Comp Physiol A. 1986 Apr;158(3):311-30. doi: 10.1007/BF00603615.

Abstract

Prey capture by a tentacle of the ctenophore Pleurobrachia elicits a reversal of beat direction and increase in beat frequency of comb plates in rows adjacent to the catching tentacle (Tamm and Moss 1985). These ciliary motor responses were elicited in intact animals by repetitive electrical stimulation of a tentacle or the midsubtentacular body surface with a suction electrode. An isolated split-comb row preparation allowed stable intracellular recording from comb plate cells during electrically stimulated motor responses of the comb plates, which were imaged by high-speed video microscopy. During normal beating in the absence of electrical stimulation, comb plate cells showed no changes in the resting membrane potential, which was typically about -60 mV. Trains of electrical impulses (5/s, 5 ms duration, at 5-15 V) delivered by an extracellular suction electrode elicited summing facilitating synaptic potentials which gave rise to graded regenerative responses. High K+ artificial seawater caused progressive depolarization of the polster cells which led to volleys of action potentials. Current injection (depolarizing or release from hyperpolarizing current) also elicited regenerative responses; the rate of rise and the peak amplitude were graded with intensity of stimulus current beyond a threshold value of about -40 mV. Increasing levels of subthreshold depolarization were correlated with increasing rates of beating in the normal direction. Action potentials were accompanied by laydown (upward curvature of nonbeating plates), reversed beating at high frequency, and intermediate beat patterns. TEA increased the summed depolarization elicited by pulse train stimulation, as well as the size and duration of the action potentials. TEA-enhanced single action potentials evoked a sudden arrest, laydown and brief bout of reversed beating. Dual electrode impalements showed that cells in the same comb plate ridge experienced similar but not identical electrical activity, even though all of their cilia beat synchronously. The large number of cells making up a comb plate, their highly asymmetric shape, and their complex innervation and electrical characteristics present interesting features of bioelectric control not found in other cilia.

摘要

栉水母侧腕水母(Pleurobrachia)的触手捕获猎物会引发捕获触手相邻排的栉板搏动方向反转以及搏动频率增加(塔姆和莫斯,1985年)。这些纤毛运动反应可通过用吸电极对触手或触手间身体中部表面进行重复电刺激在完整动物中引发。分离的栉板排制备物允许在栉板电刺激运动反应期间从栉板细胞进行稳定的细胞内记录,通过高速视频显微镜对这些反应进行成像。在无电刺激的正常搏动期间,栉板细胞的静息膜电位无变化,通常约为 -60 mV。细胞外吸电极施加的电脉冲串(5次/秒,持续5毫秒,5 - 15伏)引发累加促进性突触电位,产生分级的再生反应。高钾人工海水导致柄细胞逐渐去极化,引发动作电位群。电流注入(去极化或从超极化电流释放)也引发再生反应;上升速率和峰值幅度随刺激电流强度超过约 -40 mV的阈值而分级。阈下去极化水平的增加与正常方向搏动速率的增加相关。动作电位伴随着倒伏(非搏动板向上弯曲)、高频反向搏动和中间搏动模式。四乙铵(TEA)增加了脉冲串刺激引发的累加去极化,以及动作电位的大小和持续时间。TEA增强的单个动作电位引发突然停止、倒伏和短暂的反向搏动发作。双电极刺入显示,同一栉板嵴中的细胞经历相似但不完全相同的电活动,尽管它们所有的纤毛同步搏动。构成栉板的大量细胞、它们高度不对称的形状以及它们复杂的神经支配和电特性呈现出其他纤毛中未发现的生物电控制的有趣特征。

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