蟋蟀的学习与记忆

IF 1.6 4区 农林科学 Q2 ENTOMOLOGY Physiological Entomology Pub Date : 2022-03-28 DOI:10.1111/phen.12387
Yukihisa Matsumoto
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引用次数: 4

摘要

对于生活在食物供应不断变化的环境中的昆虫来说,学习和记忆特定线索与食物联系的能力是必不可少的。利用昆虫进行学习和记忆研究的优势,有助于揭示各种昆虫的可靠的联想学习能力。然而,关于学习和记忆背后的神经元和分子机制,报道主要局限于少数昆虫物种:果蝇、蜜蜂和蟋蟀。在这篇综述中,我将简要介绍我们在蟋蟀学习和记忆方面的研究结果。首先,我们将描述作为主要实验程序的联想条件反射范式。其次,我将分别介绍章鱼胺和多巴胺在传递食欲刺激和厌恶刺激信号中的作用,以及在学习和记忆检索中的作用。第三,短期记忆和长期记忆,蟋蟀联想记忆的两个不同的记忆阶段,将详细介绍长期记忆形成的信号通路。第四,描述了高学习记忆能力和复杂记忆的特点。最后,我将总结与年龄相关的蟋蟀记忆损伤的研究结果。继果蝇和蜜蜂之后,蟋蟀有可能成为研究学习和记忆背后的神经分子机制的合适模式昆虫。对蟋蟀学习记忆的深入研究将有助于阐明昆虫进化过程中学习记忆的神经分子机制的多样性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Learning and memory in the cricket Gryllus bimaculatus

For insects living in an environment where food supplies constantly change, the ability to learn and to memorize the association of a specific cue with food is indispensable. The advantages of using insects for studies on learning and memory have been of great help to uncover a reliable capability of associative learning in various insect species. However, regarding neuronal and molecular mechanisms underlying learning and memory, reports are largely confined to a few insect species: the fruit fly, honey bee, and field cricket. In this review, I will introduce summarized results obtained from our studies on learning and memory in crickets. First, associative conditioning paradigms, which have been our main experimental procedures, will be described. Second, I will introduce the roles of octopamine and dopamine in conveying signals about appetitive stimuli and aversive stimuli, respectively, in learning and in memory retrieval. Third, short-term memory and long-term memory, two distinct memory phases of associative memory in crickets, will be introduced with details of signalling pathways involved in long-term memory formation. Fourth, the high capability of learning and memory and characteristics of complex memory will be described. Lastly, I will summarize the results of studies on age-related memory impairment in crickets. Crickets have the potential to be suitable model insects for studying neuromolecular mechanisms underlying learning and memory, following fruit flies and honey bees. Extensive studies on learning and memory in crickets will contribute to the elucidation of diversities in the neuromolecular mechanisms of learning and memory acquired through evolution in insects.

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来源期刊
Physiological Entomology
Physiological Entomology 生物-昆虫学
CiteScore
2.80
自引率
6.70%
发文量
21
审稿时长
>12 weeks
期刊介绍: Physiological Entomology broadly considers “how insects work” and how they are adapted to their environments at all levels from genes and molecules, anatomy and structure, to behaviour and interactions of whole organisms. We publish high quality experiment based papers reporting research on insects and other arthropods as well as occasional reviews. The journal thus has a focus on physiological and experimental approaches to understanding how insects function. The broad subject coverage of the Journal includes, but is not limited to: -experimental analysis of behaviour- behavioural physiology and biochemistry- neurobiology and sensory physiology- general physiology- circadian rhythms and photoperiodism- chemical ecology
期刊最新文献
Issue Information How insects work—Linking genotype to phenotype Issue Information Efficacy of sugar-protein non-membranous dietary system for diapause egg production in Aedes albopictus mosquitoes under short-day conditions Response of fruit fly (Drosophila pseudoobscura) to diet manipulation of nutrient density
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