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首页> 外文期刊>The Journal of general physiology >The Flash-Triggering Action Potential of the Luminescent Dinoflagellate Noctiluca
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The Flash-Triggering Action Potential of the Luminescent Dinoflagellate Noctiluca

机译:夜光夜蛾夜光的触发作用的动作电位

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The action potential which elicits luminescence in Noctiluca is recorded from the flotation vacuole as a transient all-or-none hyperpolarization in response to either local or general application of inward (bath to vacuole) current. Experiments were performed to determine whether the unorthodox polarities of both the stimulus current and the potential response resulted from uncommon bioelectric mechanisms or from special morphological features of this species. The findings all indicate that the action potential belongs to the familiar class of responses which have their origin in voltage- and time-dependent selective increases in membrane permeability, and that morphological factors account for the observed deviations from normal behavior. Both the stimulus and the response have orthodox polarities provided the vacuole is designated as an "external" extracytoplasmic compartment. Differential recording between vacuole and cytoplasm showed that the action potential occurs across the vacuolar membrane, with the cytoplasmic potential, which at rest is negative with respect to the vacuole, overshooting zero and reversing sign to become transiently electropositive. The rising phase of the action potential therefore depends on active current flow through the vacuolar membrane from the vacuole into the cytoplasm. Propagation of the action potential over the subspherical cell from the locus of stimulation is thought to depend largely on the core conductor properties of the thin perivacuolar shell of cytoplasm which is bounded on its inner surface by the excitable membrane and on its outer surface by inexcitable membranes.
机译:在浮选液泡中记录了在夜光藻中引起发光的动作电位,作为响应于向内(从浴液到液泡)电流的局部或一般施加的瞬态全或无超极化。进行实验以确定刺激电流和电位响应的非正统极性是否是由不常见的生物电机制或该物种的特殊形态特征引起的。所有发现均表明动作电位属于熟悉的响应类别,其起源是膜渗透性的电压依赖性和时间依赖性选择性增加,并且形态学因素解释了所观察到的与正常行为的偏离。如果液泡被指定为“外部”胞浆外区室,则刺激和响应都具有正统极性。液泡和细胞质之间的差异记录表明,动作电位在液泡膜上发生,而胞质电势相对于液泡为负,超过零,反转信号变为瞬时正电。因此,动作电位的上升阶段取决于通过液泡膜从液泡进入细胞质的有功电流。人们认为,刺激位点在亚球形细胞上的动作电位的传播很大程度上取决于细胞质的薄周泡壳的核心导体性质,该薄壳层的内表面被可激发的膜所束缚,而其外表面被不可激发的膜所束缚。

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