Winning and losing experiences differentially alter learning performance and forebrain protein expression in mangrove rivulus killifish, Kryptolebias marmoratus

Contest outcomes alter future social behavior, but whether and how a single win or loss influences non-social learning-task performance and triggers rapid forebrain molecular responses remains unclear. The self-fertilizing mangrove rivulus killifish, Kryptolebias marmoratus , offers a useful system because contest outcomes can be standardized while reducing genetic background variation. We predicted that winning and losing would produce distinct post-contest behavioral profiles rather than equivalent or opposite shifts across tasks. We tested whether standardized winning, losing, or control experiences altered aggression, landmark-guided spatial task performance, and risk-avoidance task performance 1 h, 3 h, or 48 h after experience. In a separate experiment, we quantified whole-forebrain protein abundance 1 h after the same manipulation to identify outcome-associated molecular responses. Winners showed increased aggression and improved landmark-guided spatial task performance, whereas losers showed reduced aggression and improved risk-avoidance task performance. Proteomic analysis identified 23 outcome-associated proteins, including candidates linked to synaptic plasticity, cytoskeletal regulation, and neural energetics. Because behavioral and proteomic measurements used independent animals, these data do not establish within-individual or causal relationships between protein abundance and behavior performance. Instead, the proteomic results identify outcome-associated candidate molecules that may contribute to experience-dependent behavioral plasticity and should be tested directly in future studies.

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Publication Details

Journal
Scientific Reports
Published
2026-09-28
DOI
https://doi.org/10.1038/s41598-026-72705-6
Primary Topic
Aquaculture disease management and microbiota
Type
article
Field-Weighted Citation Impact
0.00

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article

Winning and losing experiences differentially alter learning performance and forebrain protein expression in mangrove rivulus killifish, Kryptolebias marmoratus

Dietmar Kültz, Ryan L. Earley, Audrey K. Ward, Chengyu Li
Scientific Reports
Aquaculture disease management and microbiota
article

Winning and losing experiences differentially alter learning performance and forebrain protein expression in mangrove rivulus killifish, Kryptolebias marmoratus

Dietmar Kültz, Ryan L. Earley, Audrey K. Ward, Chengyu Li
article en

Abstract

Contest outcomes alter future social behavior, but whether and how a single win or loss influences non-social learning-task performance and triggers rapid forebrain molecular responses remains unclear. The self-fertilizing mangrove rivulus killifish, Kryptolebias marmoratus , offers a useful system because contest outcomes can be standardized while reducing genetic background variation. We predicted that winning and losing would produce distinct post-contest behavioral profiles rather than equivalent or opposite shifts across tasks. We tested whether standardized winning, losing, or control experiences altered aggression, landmark-guided spatial task performance, and risk-avoidance task performance 1 h, 3 h, or 48 h after experience. In a separate experiment, we quantified whole-forebrain protein abundance 1 h after the same manipulation to identify outcome-associated molecular responses. Winners showed increased aggression and improved landmark-guided spatial task performance, whereas losers showed reduced aggression and improved risk-avoidance task performance. Proteomic analysis identified 23 outcome-associated proteins, including candidates linked to synaptic plasticity, cytoskeletal regulation, and neural energetics. Because behavioral and proteomic measurements used independent animals, these data do not establish within-individual or causal relationships between protein abundance and behavior performance. Instead, the proteomic results identify outcome-associated candidate molecules that may contribute to experience-dependent behavioral plasticity and should be tested directly in future studies.

Scientific Reports
University of North Carolina at Charlotte (US), University of Maryland, Baltimore (US), University of Alabama (US), University of Maryland, Baltimore County (US), University of California, Davis (US)
Animal Behavior Society, National Institutes of Health, National Cancer Institute
Openalex Percentile: Top 19%
Aquaculture disease management and microbiota
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