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Two Parallel Pathways Mediate Olfactory-Driven Backward Locomotion

Shai Israel, Eyal Rozenfeld, Denise Weber, Wolf Huetteroth, View ORCID ProfileMoshe Parnas
doi: https://doi.org/10.1101/2020.11.23.393819
Shai Israel
1Department of Physiology and Pharmacology, Sackler School of Medicine, Tel Aviv University, Tel Aviv 69978, Israel
2Sagol School of Neuroscience, Tel Aviv University, Tel Aviv 69978, Israel
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Eyal Rozenfeld
1Department of Physiology and Pharmacology, Sackler School of Medicine, Tel Aviv University, Tel Aviv 69978, Israel
2Sagol School of Neuroscience, Tel Aviv University, Tel Aviv 69978, Israel
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Denise Weber
3Institute for Biology, University of Leipzig, Talstraße 33, 04103 Leipzig, Germany
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Wolf Huetteroth
3Institute for Biology, University of Leipzig, Talstraße 33, 04103 Leipzig, Germany
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Moshe Parnas
1Department of Physiology and Pharmacology, Sackler School of Medicine, Tel Aviv University, Tel Aviv 69978, Israel
2Sagol School of Neuroscience, Tel Aviv University, Tel Aviv 69978, Israel
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  • ORCID record for Moshe Parnas
  • For correspondence: mparnas@tauex.tau.ac.il
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Abstract

Although animals switch to backward walking upon sensing an obstacle or danger in their path, the initiation and execution of backward locomotion is poorly understood. The discovery of Moonwalker Descending Neurons (MDNs), made Drosophila useful to study neural circuits underlying backward locomotion. MDNs were demonstrated to receive visual and mechanosensory inputs. However, whether other modalities converge onto MDNs and what are the neural circuits activating MDNs are unknown. We show that aversive but not appetitive olfactory input triggers MDN-mediated backward locomotion. We identify in each hemisphere, a single Moonwalker Subesophageal Zone neuron (MooSEZ), which triggers backward locomotion. MooSEZs act both upstream and in parallel to MDNs. Surprisingly, MooSEZs also respond mostly to aversive odor. Contrary to MDNs, blocking MooSEZs activity has little effect on odor-evoked backward locomotion. Thus, this work reveals another important modality input to MDNs in addition to a novel olfactory pathway and MDN-independent backward locomotion pathway.

Competing Interest Statement

The authors have declared no competing interest.

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The copyright holder for this preprint is the author/funder, who has granted bioRxiv a license to display the preprint in perpetuity. All rights reserved. No reuse allowed without permission.
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Posted November 24, 2020.
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Two Parallel Pathways Mediate Olfactory-Driven Backward Locomotion
Shai Israel, Eyal Rozenfeld, Denise Weber, Wolf Huetteroth, Moshe Parnas
bioRxiv 2020.11.23.393819; doi: https://doi.org/10.1101/2020.11.23.393819
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Two Parallel Pathways Mediate Olfactory-Driven Backward Locomotion
Shai Israel, Eyal Rozenfeld, Denise Weber, Wolf Huetteroth, Moshe Parnas
bioRxiv 2020.11.23.393819; doi: https://doi.org/10.1101/2020.11.23.393819

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