Understanding memory formation, storage and retrieval requires knowledge of the underlying neuronal circuits. In Drosophila, the mushroom body (MB) is the major site of associative learning. We reconstructed the morphologies and synaptic connections of all 983 neurons within the three functional units, or compartments, that compose the adult MB's α lobe, using a dataset of isotropic 8 nm voxels collected by focused ion-beam milling scanning electron microscopy. We found that Kenyon cells (KCs), whose sparse activity encodes sensory information, each make multiple en passant synapses to MB output neurons (MBONs) in each compartment. Some MBONs have inputs from all KCs, while others differentially sample sensory modalities. Only 6% of KC>MBON synapses receive a direct synapse from a dopaminergic neuron (DAN). We identified two unanticipated classes of synapses, KC>DAN and DAN>MBON. DAN activation produces a slow depolarization of the MBON in these DAN>MBON synapses and can weaken memory recall.
A connectome of a learning and memory center in the adult Drosophila brain.
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作者:Takemura Shin-Ya, Aso Yoshinori, Hige Toshihide, Wong Allan, Lu Zhiyuan, Xu C Shan, Rivlin Patricia K, Hess Harald, Zhao Ting, Parag Toufiq, Berg Stuart, Huang Gary, Katz William, Olbris Donald J, Plaza Stephen, Umayam Lowell, Aniceto Roxanne, Chang Lei-Ann, Lauchie Shirley, Ogundeyi Omotara, Ordish Christopher, Shinomiya Aya, Sigmund Christopher, Takemura Satoko, Tran Julie, Turner Glenn C, Rubin Gerald M, Scheffer Louis K
| 期刊: | Elife | 影响因子: | 6.400 |
| 时间: | 2017 | 起止号: | 2017 Jul 18; 6:e26975 |
| doi: | 10.7554/eLife.26975 | ||
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