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灯塔水母(Aglantha digitale)的中枢神经回路。III. 小根和起搏器系统。

Central circuitry in the jellyfish Aglantha digitale. III. The rootlet and pacemaker systems.

作者信息

Mackie G O, Meech R W

机构信息

Biology Department, University of Victoria, British Columbia, Canada.

出版信息

J Exp Biol. 2000 Jun;203(Pt 12):1797-807. doi: 10.1242/jeb.203.12.1797.

Abstract

Tactile stimulation of the subumbrella of Aglantha digitale was found to evoke an escape swimming response similar to that evoked by stimulation of the outer surfaces of the margin but that does not involve the ring giant axon. Evidence is presented that conduction around the margin takes place via an interconnected system of rootlet interneurones. Confocal microscopy of carboxyfluorescein-filled axons showed that the rootlet neurones run out from the bases of the motor giant axons within the inner nerve ring and come into close contact with those of the neighbouring motor giant axons on either side. Transmission between the rootlet neurones has the properties of chemical synaptic transmission. A distinct type of fast excitatory postsynaptic potential (rootlet PSP) was recorded in motor giant axons following stimulation of nearby axons in 3-5 mmol l(-)(1) Mn(2+), which lowered the PSP below spike threshold. Immune labelling with anti-syntaxin 1 showed structures tentatively identified as synapses in the inner nerve ring, including some on the rootlet neurones. Neuromuscular junctions were not labelled. A secondary consequence of stimulating motor giant axons was the triggering of events in the pacemaker system. Triggering was blocked in 105 mmol l(-)(1) Mg(2+), indicating a synaptic link. Activity in the pacemaker system led indirectly to tentacle contractions (as described in earlier papers in this series), but the contractions were not as sudden or as violent as those seen when escape swimming was mediated by the ring giant axon. Events triggered in the pacemaker system fed back into the motor giants, producing postsynaptic potentials that appeared as humps in the spike after-potential. The conduction velocity of events propagating in the relay system was increased when the rootlet pathway was simultaneously excited (piggyback effect). With the addition of the rootlet pathway, the number of identified systems concerned with locomotion, feeding and tentacle contractions comes to fourteen, and the list is probably nearly complete.

摘要

研究发现,对指状艾氏水母伞下表面进行触觉刺激,可引发一种逃避性游泳反应,该反应与刺激伞缘外表面所引发的反应相似,但不涉及环巨轴突。有证据表明,沿伞缘的传导是通过一个相互连接的小根中间神经元系统进行的。对羧基荧光素填充轴突进行共聚焦显微镜观察显示,小根神经元从内环内运动巨轴突的基部延伸出来,并与两侧相邻运动巨轴突的小根神经元紧密接触。小根神经元之间的传递具有化学突触传递的特性。在3 - 5 mmol l(-)(1) Mn(2+)中刺激附近轴突后,在运动巨轴突中记录到一种独特类型的快速兴奋性突触后电位(小根PSP),这使得PSP低于动作电位阈值。用抗 syntaxin 1进行免疫标记显示,在内环中存在一些初步鉴定为突触的结构,包括一些在小根神经元上的结构。神经肌肉接头未被标记。刺激运动巨轴突的一个次要结果是引发起搏器系统中的事件。在105 mmol l(-)(1) Mg(2+)中,这种引发被阻断,表明存在突触联系。起搏器系统中的活动间接导致触手收缩(如本系列早期论文中所述),但这些收缩不像由环巨轴突介导逃避游泳时那样突然或剧烈。起搏器系统中引发的事件反馈到运动巨轴突,产生突触后电位,这些电位在动作电位后电位中表现为驼峰。当小根通路同时被兴奋时(搭载效应),在中继系统中传播的事件的传导速度会增加。随着小根通路的加入,与运动、摄食和触手收缩相关的已确定系统数量达到14个,而且这个列表可能已接近完整。

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