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首次乙醇体验所产生的类记忆状态以乙醇特异性的方式编码到果蝇蘑菇体学习与记忆神经回路中。

Memory-like states created by the first ethanol experience are encoded into the Drosophila mushroom body learning and memory circuitry in an ethanol-specific manner.

作者信息

Larnerd Caleb, Nolazco Maria, Valdez Ashley, Sanchez Vanessa, Wolf Fred W

机构信息

Quantitative and Systems Biology Graduate Program, University of California, Merced, California, United States of America.

Biological Sciences Undergraduate Program, University of California, Merced, California, United States of America.

出版信息

PLoS Genet. 2025 Feb 3;21(2):e1011582. doi: 10.1371/journal.pgen.1011582. eCollection 2025 Feb.

Abstract

A first ethanol exposure creates three memory-like states in Drosophila. Ethanol memory-like states appear genetically and behaviorally paralleled to the canonical learning and memory traces anesthesia-sensitive, anesthesia-resistant, and long-term memory ASM, ARM, and LTM. It is unknown if these ethanol memory-like states are also encoded by the canonical learning and memory circuitry that is centered on the mushroom bodies. We show that the three ethanol memory-like states, anesthesia-sensitive tolerance (AST) and anesthesia resistant tolerance (ART) created by ethanol sedation to a moderately high ethanol exposure, and chronic tolerance created by a longer low concentration ethanol exposure, each engage the mushroom body circuitry differently. Moreover, critical encoding steps for ethanol memory-like states reside outside the mushroom body circuitry, and within the mushroom body circuitry they are markedly distinct from classical memory traces. Thus, the first ethanol exposure creates distinct memory-like states in ethanol-specific circuits and impacts the function of learning and memory circuitry in ways that might influence the formation and retention of other memories.

摘要

首次乙醇暴露在果蝇中产生三种类似记忆的状态。乙醇类似记忆状态在基因和行为上与典型的学习和记忆痕迹——麻醉敏感、麻醉抵抗和长期记忆(ASM、ARM和LTM)平行出现。尚不清楚这些乙醇类似记忆状态是否也由以蘑菇体为中心的典型学习和记忆回路编码。我们表明,由乙醇镇静至适度高浓度乙醇暴露产生的三种乙醇类似记忆状态,即麻醉敏感耐受性(AST)和麻醉抵抗耐受性(ART),以及由较长时间低浓度乙醇暴露产生的慢性耐受性,它们对蘑菇体回路的参与方式各不相同。此外,乙醇类似记忆状态的关键编码步骤位于蘑菇体回路之外,并且在蘑菇体回路中它们与经典记忆痕迹明显不同。因此,首次乙醇暴露在乙醇特异性回路中产生不同的类似记忆状态,并以可能影响其他记忆形成和保留的方式影响学习和记忆回路的功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f90b/11801723/59dc1d01a8a3/pgen.1011582.g001.jpg

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