TUM School of Life Sciences, Technical University of Munich, 85354 Freising, Germany.
Sensorimotor Control Group, Max Planck Institute of Neurobiology, 82152 Martinsried, Germany.
Curr Biol. 2020 Jun 8;30(11):2104-2115.e4. doi: 10.1016/j.cub.2020.04.037. Epub 2020 May 7.
Neuromodulation permits flexibility of synapses, neural circuits, and ultimately behavior. One neuromodulator, dopamine, has been studied extensively in its role as a reward signal during learning and memory across animal species. Newer evidence suggests that dopaminergic neurons (DANs) can modulate sensory perception acutely, thereby allowing an animal to adapt its behavior and decision making to its internal and behavioral state. In addition, some data indicate that DANs are not homogeneous but rather convey different types of information as a heterogeneous population. We have investigated DAN population activity and how it could encode relevant information about sensory stimuli and state by taking advantage of the confined anatomy of DANs innervating the mushroom body (MB) of the fly Drosophila melanogaster. Using in vivo calcium imaging and a custom 3D image registration method, we found that the activity of the population of MB DANs encodes innate valence information of an odor or taste as well as the physiological state of the animal. Furthermore, DAN population activity is strongly correlated with movement, consistent with a role of dopamine in conveying behavioral state to the MB. Altogether, our data and analysis suggest that DAN population activities encode innate odor and taste valence, movement, and physiological state in a MB-compartment-specific manner. We propose that dopamine shapes innate perception through combinatorial population coding of sensory valence, physiological, and behavioral context.
神经调节允许突触、神经网络,最终是行为的灵活性。一种神经调质,多巴胺,在学习和记忆过程中作为奖励信号在动物物种中得到了广泛的研究。新的证据表明,多巴胺能神经元(DAN)可以急性调节感觉感知,从而使动物能够根据其内部和行为状态来调整其行为和决策。此外,一些数据表明,DAN 不是同质的,而是作为一个异质群体传递不同类型的信息。我们利用多巴胺能神经元(DAN)支配果蝇黑腹果蝇(Drosophila melanogaster)蘑菇体(MB)的受限解剖结构,研究了 DAN 群体活动以及它如何通过编码有关感觉刺激和状态的相关信息来发挥作用。通过在体钙成像和自定义 3D 图像配准方法,我们发现 MB DAN 群体的活动编码了气味或味道的先天价值信息以及动物的生理状态。此外,DAN 群体活动与运动密切相关,这与多巴胺在将行为状态传递给 MB 中的作用一致。总之,我们的数据和分析表明,DAN 群体活动以 MB 特定方式编码先天气味和味道的效价、运动和生理状态。我们提出,多巴胺通过对感觉效价、生理和行为背景的组合群体编码来塑造先天感知。