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获得社会统治地位后,淡水小龙虾上行中间神经元的突触反应增强。

Enhancement of synaptic responses in ascending interneurones following acquisition of social dominance in crayfish.

机构信息

Division of Biology, Graduate School of Science and Engineering, Yamagata University, Yamagata, 990-8560, Japan.

Department of Biology, Faculty of Science, Yamagata University, Yamagata, 990-8560, Japan.

出版信息

J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2021 May;207(3):415-428. doi: 10.1007/s00359-021-01481-7. Epub 2021 Mar 27.

DOI:10.1007/s00359-021-01481-7
PMID:33772639
Abstract

When crayfish have attained dominant status after agonistic bouts, their avoidance reaction to mechanical stimulation of the tailfan changes from a dart to a turn response. Ascending interneurones originating in the terminal ganglion receive sensory inputs from the tailfan and they affect spike activity of both uropod and abdominal postural motor neurones, which coordinates the uropod and abdominal postural movements. Despite the varying output effects of ascending interneurones, the synaptic responses of all interneurones to sensory stimulation were enhanced when they acquired a dominant state. The number of spikes increased as did a sustained membrane depolarizations. Regardless of social status, the output effects on the uropod motor neurones of all interneurones except VE-1 remained unchanged. VE-1 mainly inhibited the uropod opener motor neurones in naive animals, but tended to excite them in dominant animals. Synaptic enhancement of the sensory response of ascending interneurones was also observed in naive animals treated with bath-applied serotonin. However, subordinate animals or naive animals treated with octopamine had no noticeable effect on the synaptic response of their ascending interneurones to sensory stimulation. Thus, enhancement of the synaptic response is a specific neural event that occurs when crayfish attain social dominance and it is mediated by serotonin.

摘要

当淡水小龙虾在竞争行为后获得优势地位时,它们对尾扇机械刺激的回避反应从猛冲变为转弯反应。起源于端神经节的上升神经元接收来自尾扇的感觉输入,它们影响尾肢和腹部姿势运动神经元的尖峰活动,从而协调尾肢和腹部姿势运动。尽管上升神经元的输出效应不同,但所有神经元对感觉刺激的突触反应在获得优势状态时都会增强。尖峰的数量增加,膜持续去极化。无论社会地位如何,除 VE-1 之外的所有中间神经元对尾肢运动神经元的输出效应都保持不变。VE-1 主要抑制幼稚动物的尾肢张开运动神经元,但在优势动物中往往会兴奋它们。在应用于浴的血清素处理的幼稚动物中,也观察到上升神经元的感觉反应的突触增强。然而,处于从属地位的动物或用章鱼胺处理的幼稚动物对其上升神经元对感觉刺激的突触反应没有明显影响。因此,突触反应的增强是淡水小龙虾获得社会优势时发生的特定神经事件,它由血清素介导。

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本文引用的文献

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Serotonergic control in initiating defensive responses to unexpected tactile stimuli in the trap-jaw ant .触发捕食性蚂蚁防御性反应的触须机械刺激的血清素能控制
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