Rapid Consolidation to aradishand Protein Synthesis-Dependent Long-Term Memory after Single-Session Appetitive Olfactory Conditioning inDrosophila
Rapid Consolidation to aradishand Protein Synthesis-Dependent Long-Term Memory after Single-Session Appetitive Olfactory Conditioning inDrosophila
InDrosophila, formation of aversive olfactory long-term memory (LTM) requires multiple training sessions pairing odor and electric shock punishment with rest intervals. In contrast, here we show that a single 2 min training session pairing odor with a more ethologically relevant sugar reinforcement forms long-term appetitive memory that lasts for days. Appetitive LTM has some mechanistic similarity to aversive LTM in that it can be disrupted by cycloheximide, the dCreb2-b transcriptional repressor, and thecrammerandtequilaLTM-specific mutations. However, appetitive LTM is completely disrupted by theradishmutation that apparently represents a distinct mechanistic phase of consolidated aversive memory. Furthermore, appetitive LTM requires activity in the dorsal paired medial neuron and mushroom body α′β′ neuron circuit during the first hour after training and mushroom body αβ neuron output during retrieval, suggesting that appetitive middle-term memory and LTM are mechanistically linked. Last, experiments feeding and/or starving flies after training reveals a critical motivational drive that enables appetitive LTM retrieval.
- University of Massachusetts Medical School United States
- University of Massachusetts System United States
- University of Oxford United Kingdom
Neurons, Protein Synthesis Inhibitors, 570, Appetitive Behavior, Behavior, Animal, Conditioning, Classical, 150, Temperature, Action Potentials, Raphanus, Animals, Genetically Modified, Memory, Protein Biosynthesis, Mutation, Odorants, Cyclic AMP, Animals, Drosophila Proteins, Drosophila, Cycloheximide, Food Deprivation, Mushroom Bodies
Neurons, Protein Synthesis Inhibitors, 570, Appetitive Behavior, Behavior, Animal, Conditioning, Classical, 150, Temperature, Action Potentials, Raphanus, Animals, Genetically Modified, Memory, Protein Biosynthesis, Mutation, Odorants, Cyclic AMP, Animals, Drosophila Proteins, Drosophila, Cycloheximide, Food Deprivation, Mushroom Bodies
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