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Distributed Rhythm Generators Underlie Caenorhabditis elegans Forward Locomotion

Anthony D. Fouad, Shelly Teng, Julian R. Mark, Alice Liu, Pilar Alvarez-Illera, Hongfei Ji, Angelica Du, Priya Bhirgoo, Eli Cornblath, Asuka Guan, View ORCID ProfileChristopher Fang-Yen
doi: https://doi.org/10.1101/141911
Anthony D. Fouad
University of Pennsylvania;
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Shelly Teng
University of Pennsylvania;
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Julian R. Mark
University of Pennsylvania;
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Alice Liu
University of Pennsylvania;
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Pilar Alvarez-Illera
University of Pennsylvania;
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Hongfei Ji
University of Pennsylvania;
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Angelica Du
University of Pennsylvania;
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Priya Bhirgoo
University of Pennsylvania;
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Eli Cornblath
University of Pennsylvania;
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Asuka Guan
Samuel Lunenfeld Research Institute; University of Toronto
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Christopher Fang-Yen
University of Pennsylvania;
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  • ORCID record for Christopher Fang-Yen
  • For correspondence: fangyen@seas.upenn.edu
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Abstract

Coordinated rhythmic movements are ubiquitous in animal behavior. In many organisms, chains of neural oscillators underlie the generation of these rhythms. In C. elegans, locomotor wave generation has been poorly understood; in particular, it is unclear where in the circuit rhythms are generated, and whether there exists more than one such generator. We used optogenetic and ablation experiments to probe the nature of rhythm generation in the locomotor circuit. We found that multiple sections of forward locomotor circuitry are capable of independently generating rhythms. By perturbing different components of the motor circuit, we localize the source of secondary rhythms to cholinergic motor neurons in the midbody. Using rhythmic optogenetic perturbation we demonstrate bidirectional entrainment of oscillations between different body regions. These results show that, as in many other vertebrates and invertebrates, the C. elegans motor circuit contains multiple oscillatory subcircuits that coordinate activity to generate behavior.

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  • Posted November 15, 2017.

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Distributed Rhythm Generators Underlie Caenorhabditis elegans Forward Locomotion
Anthony D. Fouad, Shelly Teng, Julian R. Mark, Alice Liu, Pilar Alvarez-Illera, Hongfei Ji, Angelica Du, Priya Bhirgoo, Eli Cornblath, Asuka Guan, Christopher Fang-Yen
bioRxiv 141911; doi: https://doi.org/10.1101/141911
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Distributed Rhythm Generators Underlie Caenorhabditis elegans Forward Locomotion
Anthony D. Fouad, Shelly Teng, Julian R. Mark, Alice Liu, Pilar Alvarez-Illera, Hongfei Ji, Angelica Du, Priya Bhirgoo, Eli Cornblath, Asuka Guan, Christopher Fang-Yen
bioRxiv 141911; doi: https://doi.org/10.1101/141911

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