Pursuing a multi-level understanding of memory and motivation.
In plain English
AI plain-English summaryHungry fruit flies remember where the sugar is, but full flies forget—and researchers want to know why. This matters because the same neural machinery that links memory to motivation in flies also operates in humans. In affective disorders and addiction, that link breaks: people pursue rewards at the wrong times or cannot stop, even when the reward no longer serves them. The gap is that we do not understand, at a molecular or circuit level, how internal states like hunger or satiety switch memory retrieval on and off. The team will use genetics, physiology, and behaviour to map the neural circuits modified by experience in the fruit fly *Drosophila*. They will profile gene expression in specific neurons before and after training, then use RNA-interference to identify conserved memory-relevant genes. They have already found the neurons that control whether an appetitive memory is retrieved only when the fly is hungry. This is fundamental science. It will not produce a drug or a device tomorrow. But understanding how a simple brain gates memory by motivational state could, over time, reveal targets for therapies that restore appropriate behavioural control in conditions where it has gone awry.
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