bioRxiv · 10.1101/2021.09.23.461548
A rise-to-threshold signal for a relative value deliberation
Abstract
Whereas progress has been made in identifying neural signals related to rapid, cued decisions1-4, less is known about how brains guide and terminate more ethologically relevant deliberations, where an animals own behavior governs the options experienced over minutes5-8. Drosophila search for many seconds to minutes for egg-laying sites with high relative value9, 10 and neurons, called oviDNs, exist whose activity fulfills necessity and sufficiency criteria for initiating the egg-deposition motor program11. Here we show that oviDNs express a calcium signal that rises over seconds to minutes as a fly deliberates whether to lay an egg. The calcium signal dips when an egg is internally prepared (ovulated), rises at a rate related to the relative value of the current substrate being experienced, and reaches a consistent peak just prior to the abdomen bend for egg deposition. We provide perturbational evidence that the egg-deposition motor program is initiated once this signal hits a threshold and that sub-threshold variation in the signal regulates the time spent deliberating and, ultimately, the option chosen. These results argue that a rise-to-threshold signal guides Drosophila to lay eggs on substrate options with high relative value, with each egg-laying event representing a self-paced decision similar to real-world decisions made by humans and other mammals.
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Vijayan, V., Wang, F., Wang, K., Chakravorty, A., Adachi, A., Akhlaghpour, H., Dickson, B. J., Maimon, G.. 2021-09-24. A rise-to-threshold signal for a relative value deliberation. https://doi.org/10.1101/2021.09.23.461548
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