Satiety behavior is regulated by ASI/ASH reciprocal antagonism

Sci Rep. 2018 May 2;8(1):6918. doi: 10.1038/s41598-018-24943-6.


Appropriate decision-making is essential for ensuring survival; one such decision is whether to eat. Overall metabolic state and the safety of food are the two factors we examined using C. elegans to ask whether the metabolic state regulates neuronal activities and corresponding feeding behavior. We monitored the activity of sensory neurons that are activated by nutritious (or appetitive) stimuli (ASI) and aversive stimuli (ASH) in starved vs. well-fed worms during stimuli presentation. Starvation reduces ASH activity to aversive stimuli while increasing ASI activity to nutritious stimuli, showing the responsiveness of each neuron is modulated by overall metabolic state. When we monitored satiety quiescence behavior that reflects the overall metabolic state, ablation of ASI and ASH produce the opposite behavior, showing the two neurons interact to control the decision to eat or not. This circuit provides a simple approach to how neurons handle sensory conflict and reach a decision that is translated to behavior.

Publication types

  • Research Support, N.I.H., Extramural
  • Research Support, Non-U.S. Gov't

MeSH terms

  • Animals
  • Appetite Stimulants*
  • Aversive Agents*
  • Biobehavioral Sciences
  • Caenorhabditis elegans / physiology*
  • Cues
  • Feeding Behavior*
  • Locomotion
  • Molecular Imprinting
  • Satiety Response*


  • Appetite Stimulants
  • Aversive Agents