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两种不同类型条件性厌恶的常见微观行为“印记”。

Common microbehavioral "footprint" of two distinct classes of conditioned aversion.

作者信息

Paisios Emmanouil, Rjosk Annabell, Pamir Evren, Schleyer Michael

机构信息

Leibniz Institute for Neurobiology (LIN), Department of Genetics of Learning and Memory, 39118 Magdeburg, Germany.

出版信息

Learn Mem. 2017 Apr 17;24(5):191-198. doi: 10.1101/lm.045062.117. Print 2017 May.

DOI:10.1101/lm.045062.117
PMID:28416630
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5397685/
Abstract

Avoiding unfavorable situations is a vital skill and a constant task for any animal. Situations can be unfavorable because they feature something that the animal wants to escape from, or because they do not feature something that it seeks to obtain. We investigate whether the microbehavioral mechanisms by which these two classes of aversion come about are shared or distinct. We find that larval avoid odors either previously associated with a punishment, or previously associated with the lack of a reward. These two classes of conditioned aversion are found to be strikingly alike at the microbehavioral level. In both cases larvae show more head casts when oriented toward the odor source than when oriented away, and direct fewer of their head casts toward the odor than away when oriented obliquely to it. Thus, conditioned aversion serving two qualitatively different functions-escape from a punishment or search for a reward-is implemented by the modulation of the same microbehavioral features. These features also underlie conditioned approach, albeit with opposite sign. That is, the larvae show conditioned approach toward odors previously associated with a reward, or with the lack of a punishment. In order to accomplish both these classes of conditioned approach the larvae show fewer head casts when oriented toward an odor, and direct more of their head casts toward it when they are headed obliquely. Given that the larva is a genetically tractable model organism that is well suited to study simple circuits at the single-cell level, these analyses can guide future research into the neuronal circuits underlying conditioned approach and aversion, and the computational principles of conditioned search and escape.

摘要

避免不利情况是任何动物的一项重要技能和持续任务。情况可能不利,是因为它们具有动物想要逃避的东西,或者因为它们没有动物试图获取的东西。我们研究这两类厌恶产生的微观行为机制是相同还是不同。我们发现幼虫会避开先前与惩罚相关联的气味,或者先前与缺乏奖励相关联的气味。这两类条件性厌恶在微观行为层面上惊人地相似。在这两种情况下,幼虫朝向气味源时比背向气味源时头部摆动更多,并且当斜向朝向气味时,朝向气味的头部摆动比背向气味时更少。因此,服务于两种性质不同功能(逃避惩罚或寻找奖励)的条件性厌恶是通过对相同微观行为特征的调节来实现的。这些特征也是条件性趋近的基础,尽管符号相反。也就是说,幼虫会对先前与奖励相关联或与缺乏惩罚相关联的气味表现出条件性趋近。为了完成这两类条件性趋近,幼虫朝向气味时头部摆动较少,并且当斜向朝向气味时,更多的头部摆动是朝向气味的。鉴于幼虫是一种遗传上易于处理的模式生物,非常适合在单细胞水平研究简单回路,这些分析可以指导未来对条件性趋近和厌恶背后的神经回路以及条件性搜索和逃避的计算原理的研究。

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本文引用的文献

1
Continuous lateral oscillations as a core mechanism for taxis in larvae.连续横向振荡作为幼虫趋性的核心机制。
Elife. 2016 Oct 18;5:e15504. doi: 10.7554/eLife.15504.
2
The wiring diagram of a glomerular olfactory system.肾小球嗅觉系统的接线图。
Elife. 2016 May 13;5:e14859. doi: 10.7554/eLife.14859.
3
A circuit mechanism for the propagation of waves of muscle contraction in Drosophila.果蝇中肌肉收缩波传播的一种循环机制。
高分辨率分析个体幼虫揭示了运动的个体变异性及其神经遗传调制。
Open Biol. 2023 Apr;13(4):220308. doi: 10.1098/rsob.220308. Epub 2023 Apr 19.
4
Dopamine activity in projection neurons regulates short-lasting olfactory approach memory in Drosophila.投射神经元中的多巴胺活性调节果蝇中短期的嗅觉趋近记忆。
Eur J Neurosci. 2022 Sep;56(5):4558-4571. doi: 10.1111/ejn.15766. Epub 2022 Jul 17.
5
Circuits for integrating learned and innate valences in the insect brain.昆虫脑中整合学习和先天情绪的回路。
Elife. 2021 Nov 10;10:e62567. doi: 10.7554/eLife.62567.
6
Associative learning in larval and adult Drosophila is impaired by the dopamine-synthesis inhibitor 3-Iodo-L-tyrosine.幼虫和成年果蝇的联想学习因多巴胺合成抑制剂 3-碘-L-酪氨酸而受损。
Biol Open. 2021 Jun 15;10(6). doi: 10.1242/bio.058198. Epub 2021 Jun 9.
7
Useful road maps: studying Drosophila larva's central nervous system with the help of connectomics.有用的路线图:借助连接组学研究果蝇幼虫的中枢神经系统。
Curr Opin Neurobiol. 2020 Dec;65:129-137. doi: 10.1016/j.conb.2020.09.008. Epub 2020 Nov 23.
8
Identification of Dopaminergic Neurons That Can Both Establish Associative Memory and Acutely Terminate Its Behavioral Expression.鉴定既能建立联想记忆又能急性终止其行为表达的多巴胺能神经元。
J Neurosci. 2020 Jul 29;40(31):5990-6006. doi: 10.1523/JNEUROSCI.0290-20.2020. Epub 2020 Jun 25.
9
Modulations of microbehaviour by associative memory strength in Drosophila larvae.果蝇幼虫中关联记忆强度对微生物行为的调制。
PLoS One. 2019 Oct 21;14(10):e0224154. doi: 10.1371/journal.pone.0224154. eCollection 2019.
10
One-trial learning in larval .幼虫期的一次性学习。
Learn Mem. 2019 Mar 21;26(4):109-120. doi: 10.1101/lm.049106.118. Print 2019 Apr.
Elife. 2016 Feb 15;5:e13253. doi: 10.7554/eLife.13253.
4
Four Individually Identified Paired Dopamine Neurons Signal Reward in Larval Drosophila.四个经个体识别的成对多巴胺能神经元在果蝇幼虫中传递奖励信号。
Curr Biol. 2016 Mar 7;26(5):661-9. doi: 10.1016/j.cub.2016.01.012. Epub 2016 Feb 11.
5
Neuronal Reward and Decision Signals: From Theories to Data.神经元奖励与决策信号:从理论到数据
Physiol Rev. 2015 Jul;95(3):853-951. doi: 10.1152/physrev.00023.2014.
6
Dynamical feature extraction at the sensory periphery guides chemotaxis.感觉外周的动态特征提取引导趋化性。
Elife. 2015 Jun 16;4:e06694. doi: 10.7554/eLife.06694.
7
The impact of odor-reward memory on chemotaxis in larval Drosophila.气味-奖励记忆对果蝇幼虫趋化性的影响。
Learn Mem. 2015 Apr 17;22(5):267-77. doi: 10.1101/lm.037978.114. Print 2015 May.
8
Activity of defined mushroom body output neurons underlies learned olfactory behavior in Drosophila.特定蘑菇体输出神经元的活动是果蝇习得嗅觉行为的基础。
Neuron. 2015 Apr 22;86(2):417-27. doi: 10.1016/j.neuron.2015.03.025. Epub 2015 Apr 9.
9
Learning the specific quality of taste reinforcement in larval Drosophila.了解果蝇幼虫味觉强化的特定特性。
Elife. 2015 Jan 27;4:e04711. doi: 10.7554/eLife.04711.
10
Mushroom body output neurons encode valence and guide memory-based action selection in Drosophila.蘑菇体输出神经元编码效价并指导果蝇基于记忆的行动选择。
Elife. 2014 Dec 23;3:e04580. doi: 10.7554/eLife.04580.