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[Preprint]. 2025 Apr 28:2024.09.04.611265. Originally published 2024 Sep 8. [Version 2] doi: 10.1101/2024.09.04.611265

Humidity as a zeitgeber for circadian entrainment of insect systems

Shyh-Chi Chen, Grace Goodhart, Daniel Eaton, Nathan Catlett, Tabitha Cady, Hannah Tran, Luke E Lutz, Lyn Wang, Ella Girard, Jaida Savino, Jodi Perry, Libby Hall, Leo Walker, Amena Bidiwala, Emma Tarter, Joshua Tompkin, Nina Greene, Joshua B Benoit
PMCID: PMC11398457  PMID: 39282408

Abstract

Humidity levels, like light and temperature, fluctuate daily yet are less predictable; however, whether humidity entrains circadian clocks and enables animals to synchronize behaviors to environmental variations remains unknown. Here, we investigate the circadian humidity entrainment in various insects. Multiple species robustly respond to humidity cycles, and when the humidity cue is removed, their rhythmic behaviors continue, suggesting that humidity-associated rhythmic activities are under circadian control. Moreover, the Drosophila clock and hygrosensation mutants lack rhythmic activities during and after humidity entrainment, indicating that the core clock components and hygrosensors are essential to circadian entrainment. Our findings identify that humidity serves as a novel zeitgeber for circadian entrainment for insects that could have broad applicability and importance among animal systems.

One Sentence Summary

Humidity entrainment of the circadian clock enables the synchronization of insect behaviors to environments.

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