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交配临近会蒙蔽威胁感知。

Mating proximity blinds threat perception.

机构信息

School of Biosciences, University of Birmingham, Birmingham, UK.

Birmingham Centre for Neurogenetics, University of Birmingham, Birmingham, UK.

出版信息

Nature. 2024 Oct;634(8034):635-643. doi: 10.1038/s41586-024-07890-3. Epub 2024 Aug 28.

Abstract

Romantic engagement can bias sensory perception. This 'love blindness' reflects a common behavioural principle across organisms: favouring pursuit of a coveted reward over potential risks. In the case of animal courtship, such sensory biases may support reproductive success but can also expose individuals to danger, such as predation. However, how neural networks balance the trade-off between risk and reward is unknown. Here we discover a dopamine-governed filter mechanism in male Drosophila that reduces threat perception as courtship progresses. We show that during early courtship stages, threat-activated visual neurons inhibit central courtship nodes via specific serotonergic neurons. This serotonergic inhibition prompts flies to abort courtship when they see imminent danger. However, as flies advance in the courtship process, the dopaminergic filter system reduces visual threat responses, shifting the balance from survival to mating. By recording neural activity from males as they approach mating, we demonstrate that progress in courtship is registered as dopaminergic activity levels ramping up. This dopamine signalling inhibits the visual threat detection pathway via Dop2R receptors, allowing male flies to focus on courtship when they are close to copulation. Thus, dopamine signalling biases sensory perception based on perceived goal proximity, to prioritize between competing behaviours.

摘要

浪漫的约定可能会影响感知。这种“爱情盲目”反映了生物界的一个普遍行为原则:在追求渴望的奖励时,优先考虑追求奖励,而不是潜在的风险。在动物求偶的情况下,这种感官偏差可能有助于繁殖成功,但也会使个体面临危险,例如被捕食。然而,神经网络如何在风险和回报之间取得平衡尚不清楚。在这里,我们发现了一种多巴胺控制的雄性果蝇过滤机制,可以随着求偶过程的进行而降低对威胁的感知。我们表明,在早期求偶阶段,威胁激活的视觉神经元通过特定的血清素能神经元抑制中央求偶节点。这种血清素能抑制促使苍蝇在看到迫在眉睫的危险时放弃求偶。然而,随着苍蝇在求偶过程中的进展,多巴胺过滤系统会降低视觉威胁反应,从而将平衡从生存转移到交配。通过记录雄性苍蝇在接近交配时的神经活动,我们证明求偶的进展被记录为多巴胺活动水平的上升。这种多巴胺信号通过 Dop2R 受体抑制视觉威胁检测途径,使雄性苍蝇在接近交配时能够专注于求偶。因此,多巴胺信号根据感知目标的接近程度来影响感知,从而在竞争行为之间进行优先级排序。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9e4b/11485238/d93b83d3e462/41586_2024_7890_Fig1_HTML.jpg

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