4.8 Article

High-content behavioral analysis of Caenorhabditis elegans in precise spatiotemporal chemical environments

Journal

NATURE METHODS
Volume 8, Issue 7, Pages 599-U120

Publisher

NATURE PUBLISHING GROUP
DOI: 10.1038/NMETH.1630

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Funding

  1. Howard Hughes Medical Institute
  2. G. Harold and Leila Y. Mathers Foundation
  3. Scientific Interface from the Burroughs Wellcome Fund

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To quantitatively understand chemosensory behaviors, it is desirable to present many animals with repeatable, well-defined chemical stimuli. To that end, we describe a microfluidic system to analyze Caenorhabditis elegans behavior in defined temporal and spatial stimulus patterns. A 2 cm x 2 cm structured arena allowed C. elegans to perform crawling locomotion in a controlled liquid environment. We characterized behavioral responses to attractive odors with three stimulus patterns: temporal pulses, spatial stripes and a linear concentration gradient, all delivered in the fluid phase to eliminate variability associated with air-fluid transitions. Different stimulus configurations preferentially revealed turning dynamics in a biased random walk, directed orientation into an odor stripe and speed regulation by odor. We identified both expected and unexpected responses in wild-type worms and sensory mutants by quantifying dozens of behavioral parameters. The devices are inexpensive, easy to fabricate, reusable and suitable for delivering any liquid-borne stimulus.

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