果蝇的不同记忆范式揭示了不同的神经机制。

IF 1.8 4区 医学 Q4 NEUROSCIENCES Learning & memory Pub Date : 2024-06-11 Print Date: 2024-05-01 DOI:10.1101/lm.053810.123
Amoolya Sai Dwijesha, Akhila Eswaran, Jacob A Berry, Anna Phan
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引用次数: 0

摘要

在这篇综述中,我们汇总了在成年果蝇中开发的不同类型的学习和记忆范式,并试图评估支持不同类型记忆的神经机制的异同。最简单的联想记忆实验是条件反射范式(嗅觉、视觉和味觉)。在这些记忆方面已经做了大量工作,揭示了支持这种记忆的数百个基因和神经回路。各种条件反射试验(逆转学习、追踪条件反射、潜伏抑制和消退)也揭示了有趣的记忆机制,而支持空间记忆(热迷宫、定向记忆和热箱)和先天行为条件抑制(趋光性、负趋地性、趋气性和运动性)的机制在很大程度上仍未得到探索。近年来,人们对多感觉和多成分记忆(情境依赖记忆和跨模态记忆)以及高阶记忆(感觉预条件和二阶条件)的兴趣日益浓厚。其中一些研究揭示了复杂的蘑菇体(MB)神经回路如何支持更复杂的记忆。最后,最复杂的记忆可以说是涉及社会记忆的记忆:求偶条件和社会学习(配偶复制和产卵行为)。目前,人们对支持社会记忆的机制知之甚少。总体而言,主肌肉对多种感觉模式的联想记忆和多感觉整合非常重要,而中央复合体对位置、定向和导航记忆非常重要。有趣的是,几种不同类型的记忆似乎都使用了类似或变异的嗅觉调节神经回路,它们以不同的方式被重新利用。
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Diverse memory paradigms in Drosophila reveal diverse neural mechanisms.

In this review, we aggregated the different types of learning and memory paradigms developed in adult Drosophila and attempted to assess the similarities and differences in the neural mechanisms supporting diverse types of memory. The simplest association memory assays are conditioning paradigms (olfactory, visual, and gustatory). A great deal of work has been done on these memories, revealing hundreds of genes and neural circuits supporting this memory. Variations of conditioning assays (reversal learning, trace conditioning, latent inhibition, and extinction) also reveal interesting memory mechanisms, whereas mechanisms supporting spatial memory (thermal maze, orientation memory, and heat box) and the conditioned suppression of innate behaviors (phototaxis, negative geotaxis, anemotaxis, and locomotion) remain largely unexplored. In recent years, there has been an increased interest in multisensory and multicomponent memories (context-dependent and cross-modal memory) and higher-order memory (sensory preconditioning and second-order conditioning). Some of this work has revealed how the intricate mushroom body (MB) neural circuitry can support more complex memories. Finally, the most complex memories are arguably those involving social memory: courtship conditioning and social learning (mate-copying and egg-laying behaviors). Currently, very little is known about the mechanisms supporting social memories. Overall, the MBs are important for association memories of multiple sensory modalities and multisensory integration, whereas the central complex is important for place, orientation, and navigation memories. Interestingly, several different types of memory appear to use similar or variants of the olfactory conditioning neural circuitry, which are repurposed in different ways.

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来源期刊
Learning & memory
Learning & memory 医学-神经科学
CiteScore
3.60
自引率
5.00%
发文量
45
审稿时长
6-12 weeks
期刊介绍: The neurobiology of learning and memory is entering a new interdisciplinary era. Advances in neuropsychology have identified regions of brain tissue that are critical for certain types of function. Electrophysiological techniques have revealed behavioral correlates of neuronal activity. Studies of synaptic plasticity suggest that some mechanisms of memory formation may resemble those of neural development. And molecular approaches have identified genes with patterns of expression that influence behavior. It is clear that future progress depends on interdisciplinary investigations. The current literature of learning and memory is large but fragmented. Until now, there has been no single journal devoted to this area of study and no dominant journal that demands attention by serious workers in the area, regardless of specialty. Learning & Memory provides a forum for these investigations in the form of research papers and review articles.
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