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条纹乌贼(Sepia bandensis)腕部存在周边学习与记忆的潜在证据。

Potential evidence of peripheral learning and memory in the arms of dwarf cuttlefish, Sepia bandensis.

作者信息

Bowers Jessica, Wilson Jack, Nimi Tahirah, Sittaramane Vinoth

机构信息

Department of Biology, Georgia Southern University, 4324 Old Register Rd, Statesboro, GA, 30460, USA.

出版信息

J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2021 Jul;207(4):575-594. doi: 10.1007/s00359-021-01499-x. Epub 2021 Jun 14.

Abstract

CREB (cAMP response element-binding) transcription factors are conserved markers of memory formation in the brain and peripheral circuits. We provide immunohistochemical evidence of CREB phosphorylation in the dwarf cuttlefish, Sepia bandensis, following the inaccessible prey (IP) memory experiment. During the IP experiment, cuttlefish are shown prey enclosed in a transparent tube, and tentacle strikes against the tube decrease over time as the cuttlefish learns the prey is inaccessible. The cues driving IP learning are unclear but may include sensory inputs from arms touching the tube. The neural activity marker, anti-phospho-CREB (anti-pCREB) was used to determine whether IP training stimulated cuttlefish arm sensory neurons. pCREB immunoreactivity occurred along the oral surface of the arms, including the suckers and epithelial folds surrounding the suckers. pCREB increased in the epithelial folds and suckers of trained cuttlefish. We found differential pCREB immunoreactivity along the distal-proximal axis of trained arms, with pCREB concentrated distally. Unequal CREB phosphorylation occurred among the 4 trained arm pairs, with arm pairs 1 and 2 containing more pCREB. The resulting patterns of pCREB in trained arms suggest that the arms obtain cues that may be salient for learning and memory of the IP experiment.

摘要

CREB(环磷酸腺苷反应元件结合蛋白)转录因子是大脑和外周神经回路中记忆形成的保守标志物。我们提供了在矮小乌贼(Sepia bandensis)进行难以获取猎物(IP)记忆实验后,CREB磷酸化的免疫组织化学证据。在IP实验中,向乌贼展示装在透明管中的猎物,随着乌贼了解到猎物无法获取,其触手对管子的击打次数会随着时间减少。驱动IP学习的线索尚不清楚,但可能包括来自触手触碰管子的感觉输入。使用神经活动标志物抗磷酸化CREB(抗pCREB)来确定IP训练是否刺激了乌贼触手感觉神经元。pCREB免疫反应出现在触手的口面,包括吸盘以及围绕吸盘的上皮褶皱。训练后的乌贼上皮褶皱和吸盘中的pCREB增加。我们发现在训练触手的远 - 近轴上pCREB免疫反应存在差异,pCREB集中在远端。在4对训练过的触手中,CREB磷酸化程度不相等,第1对和第2对触手含有更多的pCREB。训练触手中pCREB的最终模式表明,触手获得了对于IP实验学习和记忆可能显著的线索。

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