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果蝇在感觉冲突中进行自适应选择的神经元集合编码。

A neuronal ensemble encoding adaptive choice during sensory conflict in Drosophila.

机构信息

Department of Cellular and Molecular Physiology, Yale University, New Haven, CT, USA.

Interdepartmental Neuroscience Program, Yale University, New Haven, CT, USA.

出版信息

Nat Commun. 2021 Jul 5;12(1):4131. doi: 10.1038/s41467-021-24423-y.

Abstract

Feeding decisions are fundamental to survival, and decision making is often disrupted in disease. Here, we show that neural activity in a small population of neurons projecting to the fan-shaped body higher-order central brain region of Drosophila represents food choice during sensory conflict. We found that food deprived flies made tradeoffs between appetitive and aversive values of food. We identified an upstream neuropeptidergic and dopaminergic network that relays internal state and other decision-relevant information to a specific subset of fan-shaped body neurons. These neurons were strongly inhibited by the taste of the rejected food choice, suggesting that they encode behavioral food choice. Our findings reveal that fan-shaped body taste responses to food choices are determined not only by taste quality, but also by previous experience (including choice outcome) and hunger state, which are integrated in the fan-shaped body to encode the decision before relay to downstream motor circuits for behavioral implementation.

摘要

进食决策是生存的基础,而疾病常破坏决策能力。在这里,我们发现投射到果蝇扇形身体高级中枢脑区的一小群神经元的神经活动代表了在感觉冲突期间的食物选择。我们发现,饥饿的果蝇在食物的吸引力和厌恶值之间进行权衡。我们鉴定了一个上游神经肽和多巴胺能网络,该网络将内部状态和其他决策相关信息传递到扇形身体神经元的特定亚群。这些神经元被拒绝的食物选择的味道强烈抑制,这表明它们编码行为食物选择。我们的发现表明,扇形身体对食物选择的味觉反应不仅取决于味道质量,还取决于先前的经验(包括选择结果)和饥饿状态,这些状态在扇形身体中整合,以便在传递到下游运动回路进行行为实施之前对决策进行编码。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b987/8257655/3bce23629701/41467_2021_24423_Fig1_HTML.jpg

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