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果蝇中的嗅觉记忆痕迹。

Olfactory memory traces in Drosophila.

作者信息

Berry Jacob, Krause William C, Davis Ronald L

机构信息

Program in Developmental Biology, Baylor College of Medicine, Houston, TX 77030, USA.

出版信息

Prog Brain Res. 2008;169:293-304. doi: 10.1016/S0079-6123(07)00018-0.

Abstract

In Drosophila, the fruit fly, coincident exposure to an odor and an aversive electric shock can produce robust behavioral memory. This behavioral memory is thought to be regulated by cellular memory traces within the central nervous system of the fly. These molecular, physiological, or structural changes in neurons, induced by pairing odor and shock, regulate behavior by altering the neurons' response to the learned environment. Recently, novel in vivo functional imaging techniques have allowed researchers to observe cellular memory traces in intact animals. These investigations have revealed interesting temporal and spatial dynamics of cellular memory traces. First, a short-term cellular memory trace was discovered that exists in the antennal lobe, an early site of olfactory processing. This trace represents the recruitment of new synaptic activity into the odor representation and forms for only a short period of time just after training. Second, an intermediate-term cellular memory trace was found in the dorsal paired medial neuron, a neuron thought to play a role in stabilizing olfactory memories. Finally, a long-term protein synthesis-dependent cellular memory trace was discovered in the mushroom bodies, a structure long implicated in olfactory learning and memory. Therefore, it appears that aversive olfactory associations are encoded by multiple cellular memory traces that occur in different regions of the brain with different temporal domains.

摘要

在果蝇中,同时接触一种气味和一次厌恶的电击能够产生强大的行为记忆。这种行为记忆被认为是由果蝇中枢神经系统内的细胞记忆痕迹所调控的。气味与电击配对所诱导的神经元中的这些分子、生理或结构变化,通过改变神经元对已学习环境的反应来调节行为。最近,新型的体内功能成像技术使研究人员能够在完整动物体内观察细胞记忆痕迹。这些研究揭示了细胞记忆痕迹有趣的时间和空间动态。首先,在触角叶(嗅觉处理的早期位点)发现了一种短期细胞记忆痕迹。这种痕迹代表着新的突触活动被纳入气味表征,并且仅在训练后短时间内形成。其次,在背侧配对中间神经元中发现了一种中期细胞记忆痕迹,该神经元被认为在稳定嗅觉记忆中发挥作用。最后,在蘑菇体中发现了一种长期的蛋白质合成依赖性细胞记忆痕迹,蘑菇体长期以来一直与嗅觉学习和记忆有关。因此,厌恶的嗅觉关联似乎是由在大脑不同区域、不同时间域出现的多种细胞记忆痕迹编码的。

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