Tastes typically evoke innate behavioral responses that can be broadly categorized as acceptance or rejection. However, research in Drosophila melanogaster indicates that taste responses also exhibit plasticity through experience-dependent changes in mushroom body circuits. In this study, we develop a novel taste learning paradigm using closed-loop optogenetics. We find that appetitive and aversive taste memories can be formed by pairing gustatory stimuli with optogenetic activation of sensory neurons or dopaminergic neurons encoding reward or punishment. As with olfactory memories, distinct dopaminergic subpopulations drive the parallel formation of short- and long-term appetitive memories. Long-term memories are protein synthesis-dependent and have energetic requirements that are satisfied by a variety of caloric food sources or by direct stimulation of MB-MP1 dopaminergic neurons. Our paradigm affords new opportunities to probe plasticity mechanisms within the taste system and understand the extent to which taste responses depend on experience.
Optogenetic induction of appetitive and aversive taste memories in Drosophila.
利用光遗传学方法诱导果蝇产生趋利和厌恶的味觉记忆
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作者:Jelen Meghan, Musso Pierre-Yves, Junca Pierre, Gordon Michael D
| 期刊: | Elife | 影响因子: | 6.400 |
| 时间: | 2023 | 起止号: | 2023 Sep 26; 12:e81535 |
| doi: | 10.7554/eLife.81535 | ||
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