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刺胞动物的联想学习。

Associative learning in the cnidarian .

机构信息

Department of Biology, Institute of Zoology, University of Fribourg, CH-1700 Fribourg, Switzerland.

Departament de Genètica, Universitat de Barcelona, 08028 Barcelona, Spain.

出版信息

Proc Natl Acad Sci U S A. 2023 Mar 28;120(13):e2220685120. doi: 10.1073/pnas.2220685120. Epub 2023 Mar 20.

Abstract

The ability to learn and form memories allows animals to adapt their behavior based on previous experiences. Associative learning, the process through which organisms learn about the relationship between two distinct events, has been extensively studied in various animal taxa. However, the existence of associative learning, prior to the emergence of centralized nervous systems in bilaterian animals, remains unclear. Cnidarians such as sea anemones or jellyfish possess a nerve net, which lacks centralization. As the sister group to bilaterians, they are particularly well suited for studying the evolution of nervous system functions. Here, we probe the capacity of the starlet sea anemone to form associative memories by using a classical conditioning approach. We developed a protocol combining light as the conditioned stimulus with an electric shock as the aversive unconditioned stimulus. After repetitive training, animals exhibited a conditioned response to light alone-indicating that they learned the association. In contrast, all control conditions did not form associative memories. Besides shedding light on an aspect of cnidarian behavior, these results root associative learning before the emergence of NS centralization in the metazoan lineage and raise fundamental questions about the origin and evolution of cognition in brainless animals.

摘要

学习和形成记忆的能力使动物能够根据以往的经验调整自己的行为。联想学习是生物体了解两个不同事件之间关系的过程,它在各种动物类群中都得到了广泛的研究。然而,在两侧对称动物中枢神经系统出现之前,联想学习是否存在尚不清楚。刺胞动物(如海葵或水母)拥有神经网,但缺乏中心化。作为两侧对称动物的姐妹群,它们特别适合研究神经系统功能的进化。在这里,我们通过经典的条件反射方法来探究明星海葵形成联想记忆的能力。我们开发了一种将光作为条件刺激,将电击作为厌恶的非条件刺激的方案。经过反复训练,动物对单独的光表现出条件反应,这表明它们已经学会了这种关联。相比之下,所有对照条件都没有形成联想记忆。除了揭示刺胞动物行为的一个方面外,这些结果还将联想学习的起源追溯到了后生动物谱系中中枢神经系统中心化出现之前,并提出了关于无脑动物认知的起源和进化的基本问题。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8ade/10068830/b37eb4eb8d9f/pnas.2220685120fig01.jpg

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