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首页> 外文期刊>The Journal of Experimental Biology >Shell damage leads to enhanced memory formation in Lymnaea
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Shell damage leads to enhanced memory formation in Lymnaea

机译:壳体损坏导致Lymnaea中增强了内存形成

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摘要

Ecologically relevant stressors alter the ability of the pond snail, Lymnaea stagnalis, to form long-term memory (LTM). Here, we show that an environmentally relevant stressor, shell damage, has a dramatic effect on the enhancement of LTM formation. Damage in the form of a shell clip 24 h before operant conditioning training resulted in long-term memory (LTM) formation following a single 0.5 h training session (TS). Typically, in these snails, two 0.5 h TSs with a 1 h interval between the sessions are required to cause LTM formation. We show here that even with a 72 h interval between shell clip and training, memory enhancement still occurred. The stress associated with shell clip could be mitigated by an ongoing high-Ca2+ pond water environment, an injection of propranolol and a DNA methylation blocker. However, use of an anaesthetic (MgCl2) during the clip or intermittent exposure to the high-Ca2+ pond water environment did not mitigate the stress associated with the shell clip. Shell clip was also sufficient to cause juvenile snails, which neither learn nor form memory, to gain the capacity to form LTM. Together, the experiments demonstrate that shell clipping is an environmentally relevant stressor that can cause enhancement of LTM formation.
机译:生态相关的压力源改变池塘蜗牛,Lymnaea Stagnalis形成长期记忆(LTM)的能力。在这里,我们表明,对环境相关的压力源,壳损伤对LTM形成的增强具有巨大影响。在操作调节训练之前,壳夹24h的形式损坏导致单个0.5小时训练会话(TS)之后的长期存储器(LTM)形成。通常,在这些蜗牛中,需要两种0.5小时的0.5h Tss,在会话之间有1小时间隔来导致LTM形成。我们在这里展示了壳牌剪辑和训练之间的72小时间隔,仍然发生了内存增强。可以通过持续的高Ca2 +池水环境,注射丙醇和DNA甲基化阻滞剂来减轻与壳夹相关的应力。然而,在夹子期间使用麻醉剂(MgCl2)或间歇暴露于高CA2 +池塘水环境的暴露并未减轻与壳夹相关的应力。壳夹也足以引起少年蜗牛,既不学习也不形成内存,以获得形成LTM的能力。在一起,实验表明,壳剪辑是一种环境相关的压力源,可引起LTM形成的增强。

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