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Navigational strategies underlying temporal phototaxis in Drosophila larvae

View ORCID ProfileMaxwell L. Zhu, View ORCID ProfileKristian J. Herrera, View ORCID ProfileKatrin Vogt, View ORCID ProfileArmin Bahl
doi: https://doi.org/10.1101/2020.01.06.896142
Maxwell L. Zhu
1Department of Physics, Harvard University, 17 Oxford Street, Cambridge, MA 02138, USA
2Department of Molecular and Cellular Biology, Harvard University, 16 Divinity Avenue, Cambridge, MA 02138, USA
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  • ORCID record for Maxwell L. Zhu
Kristian J. Herrera
2Department of Molecular and Cellular Biology, Harvard University, 16 Divinity Avenue, Cambridge, MA 02138, USA
3Center for Brain Science, Harvard University, 52 Oxford Street, Cambridge, MA 02138, USA
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Katrin Vogt
1Department of Physics, Harvard University, 17 Oxford Street, Cambridge, MA 02138, USA
3Center for Brain Science, Harvard University, 52 Oxford Street, Cambridge, MA 02138, USA
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Armin Bahl
2Department of Molecular and Cellular Biology, Harvard University, 16 Divinity Avenue, Cambridge, MA 02138, USA
3Center for Brain Science, Harvard University, 52 Oxford Street, Cambridge, MA 02138, USA
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  • For correspondence: arminbahl@fas.harvard.edu
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Abstract

Navigating across light gradients is essential for survival for many animals. However, we still have a poor understanding of the algorithms that underlie such behaviors. Here we develop a novel phototaxis assay for Drosophila larvae in which light intensity is always spatially uniform but updates depending on the location of the animal in the arena. Even though larvae can only rely on temporal cues in this closed-loop setup, we find that they are capable of finding preferred areas of low light intensity. Further detailed analysis of their behavior reveals that larvae turn more frequently and that heading angle changes increase when they experience luminance increments over extended periods of time. We suggest that temporal integration of luminance change during runs is an important – and so far largely unexplored – element of phototaxis.

Summary statement Using a novel closed-loop behavioral assay, we show that Drosophila larvae can navigate light gradients exclusively using temporal cues. Analyzing and modeling their behavior in detail, we propose that larvae achieve this by integrating luminance change during runs.

Competing Interest Statement

The authors have declared no competing interest.

Copyright 
The copyright holder for this preprint is the author/funder, who has granted bioRxiv a license to display the preprint in perpetuity. It is made available under a CC-BY 4.0 International license.
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Posted July 14, 2020.
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Navigational strategies underlying temporal phototaxis in Drosophila larvae
Maxwell L. Zhu, Kristian J. Herrera, Katrin Vogt, Armin Bahl
bioRxiv 2020.01.06.896142; doi: https://doi.org/10.1101/2020.01.06.896142
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Navigational strategies underlying temporal phototaxis in Drosophila larvae
Maxwell L. Zhu, Kristian J. Herrera, Katrin Vogt, Armin Bahl
bioRxiv 2020.01.06.896142; doi: https://doi.org/10.1101/2020.01.06.896142

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