Institute of Neuroscience and State Key Laboratory of Neuroscience, Shanghai Institutes of Biological Sciences, Chinese Academy of Sciences, Shanghai 200031, China.
Biochem Biophys Res Commun. 2013 Jun 21;436(1):35-40. doi: 10.1016/j.bbrc.2013.05.036. Epub 2013 May 21.
In the mushroom bodies (MBs) of Drosophila, an analogue of the mammalian olfactory cortex, olfactory stimuli are sparsely encoded by Kenyon cells (KCs) that exhibit a high level of odor selectivity. Sparse coding of olfactory stimuli has significant advantages for maximizing the discrimination power and storage capacity of MBs. The inhibitory gamma-aminobutyric acid (GABA) system is important for regulating information processing in MBs, but its specific role in the sparse coding of odors is unclear. In this study, we investigated the role of the GABA system in the sparse coding of odors using an in vivo calcium imaging strategy, which allowed us to measure the activity of the KC population at single cell resolution while the components of the GABA system were genetically manipulated. We found that the down-regulation of GABAA but not GABAB receptors in KCs reduced the sparseness of odor representations in the MB, as shown by an increase in the population response probability and decrease in the odor selectivity of single KCs. Furthermore, the down-regulation of GABA synthesis in a pair of large GABAergic neurons innervating the entire MB reduced the sparseness of odor representations in KCs. In conclusion, the sparse coding of odors in MBs is regulated by a pair of GABAergic neurons through the GABAA receptors on KCs, thus demonstrating a specific role of the inhibitory GABA system on information processing in the MB.
在果蝇的蘑菇体(MBs)中,一种类似于哺乳动物嗅觉皮层的结构,嗅觉刺激由表现出高度气味选择性的 Kenyon 细胞(KC)稀疏编码。嗅觉刺激的稀疏编码对于最大限度地提高 MBs 的辨别力和存储容量具有重要意义。抑制性γ-氨基丁酸(GABA)系统对于调节 MBs 中的信息处理非常重要,但它在气味稀疏编码中的具体作用尚不清楚。在这项研究中,我们使用体内钙成像策略研究了 GABA 系统在气味稀疏编码中的作用,该策略允许我们在遗传操纵 GABA 系统的各个组成部分的同时,以单细胞分辨率测量 KC 群体的活性。我们发现,KC 中 GABAA 受体而非 GABAB 受体的下调会降低 MB 中气味代表的稀疏度,表现为群体反应概率增加和单个 KC 的气味选择性降低。此外,一对支配整个 MB 的大型 GABA 能神经元中 GABA 合成的下调会降低 KC 中气味代表的稀疏度。总之,MBs 中气味的稀疏编码是由一对 GABA 能神经元通过 KC 上的 GABAA 受体调节的,从而证明了抑制性 GABA 系统在 MB 中信息处理中的特定作用。