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从学习到逆向学习:非清洁鱼如何应对生物市场任务。

From learning to reversal learning: How non-cleaner fish tackle the biological market task.

作者信息

Prétôt Laurent, Miller Hannah, Leyden Kayla

机构信息

Department of Psychology and Counseling, Pittsburg State University, Pittsburg, KS, 66762, U.S.A..

SEA LIFE Aquarium Kansas City, Kansas City, MO, 64108, U.S.A.

出版信息

Anim Cogn. 2025 Jul 24;28(1):61. doi: 10.1007/s10071-025-01983-w.

Abstract

UNLABELLED

The biological market task– also known as the ephemeral reward task– models the mutualistic cleaning interactions between bluestreak cleaner wrasses and their client fish on coral reefs. In this dichotomous choice paradigm, selecting an “ephemeral” food option first grants access to a “permanent” food option, while choosing the permanent option first makes the ephemeral one unavailable. Cleaner fish have previously outperformed other vertebrates on this task, presumably because the cues to solve it are more ecologically salient for cleaner fish. In this study, we tested whether this advantage extends to non-cleaner fish by assessing the learning and reversal learning performance of three dottyback species ( spp.)– mesopredator reef fish that do not engage in cleaning mutualisms– on the original task and two derived versions that varied in the cue required for solving it. Dottybacks performed poorly in all versions of the task. Notably, they did worse in the original task than cleaner wrasses tested previously, suggesting that cleaner fish’ success is tied to specific ecological conditions not shared by other species. Further analyses revealed subtle differences in performance between tasks and faster learning in the initial test compared to the reversal test, an indicator of limited cognitive flexibility. Together, these findings help fill a gap in the biological market literature and underscore how species-specific ecological traits and task structure shape cognitive performance.

SUPPLEMENTARY INFORMATION

The online version contains supplementary material available at 10.1007/s10071-025-01983-w.

摘要

未标注

生物市场任务(也称为短暂奖励任务)模拟了蓝带清洁濑鱼与其在珊瑚礁上的客户鱼之间的互利清洁互动。在这种二分选择范式中,首先选择“短暂”食物选项可获得“永久”食物选项,而首先选择永久选项会使短暂选项不可用。清洁鱼此前在这项任务上的表现优于其他脊椎动物,大概是因为解决该任务的线索对清洁鱼来说在生态上更为显著。在本研究中,我们通过评估三种拟雀鲷( 属)——不参与清洁共生关系的中捕食者礁鱼——在原始任务以及两个衍生版本(解决任务所需线索不同)上的学习和逆向学习表现,来测试这种优势是否也适用于非清洁鱼。拟雀鲷在该任务的所有版本中表现都很差。值得注意的是,它们在原始任务中的表现比之前测试的清洁濑鱼更差,这表明清洁鱼的成功与其他物种不具备的特定生态条件有关。进一步分析揭示了任务之间表现的细微差异,以及与逆向测试相比在初始测试中学习速度更快,这是认知灵活性有限的一个指标。这些发现共同填补了生物市场文献中的一个空白,并强调了物种特异性生态特征和任务结构如何塑造认知表现。

补充信息

在线版本包含可在10.1007/s10071-025-01983-w获取的补充材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/105f/12289785/1c900d1abdde/10071_2025_1983_Fig1_HTML.jpg

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