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March 8, 1991Science421 citations

Control of Larval Development by Chemosensory Neurons in Caenorhabditis elegans

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CBCornelia I. BargmannHHH. Robert Horvitz

Key Points

  • To identify the specific chemosensory neurons and signaling mechanisms that control the developmental decision between normal larval growth and dauer larva formation in Caenorhabditis elegans.
  • Ablated four classes of chemosensory neurons (ADF, ASG, ASI, and ASJ) to assess developmental outcomes.
  • Evaluated the developmental responses of wild-type and dauer-defective mutant strains exposed to food and dauer pheromone.
  • Killing all four neuron classes (ADF, ASG, ASI, and ASJ) resulted in animals developing into dauer larvae regardless of external environmental cues.
  • Entry into and recovery from the dauer stage were governed predominantly by distinct subsets of chemosensory neurons.
  • Chemosensory neurons remained active without sensory input, while dauer pheromone acted by inhibiting neuronal signals necessary for continuous normal development.

Abstract

Larval development of the nematode Caenorhabditis elegans is controlled by the activities of four classes of chemosensory neurons. The choice between normal development and development into a specialized larval form called a dauer larva is regulated by competing environmental stimuli: food and a dauer pheromone. When the neuron classes ADF, ASG, ASI, and ASJ are killed, animals develop as dauer larvae regardless of environmental conditions. These neurons might sense food or dauer pheromone, or both, to initiate the specialized differentiation of many cell types that occurs during dauer formation. Entry into and exit from the dauer stage are primarily controlled by different chemosensory neurons. The analysis of mutants defective in dauer formation indicates that the chemosensory neurons are active in the absence of sensory inputs and that dauer pheromone inhibits the ability of these neurons to generate a signal necessary for normal development.

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Cite This Study

Bargmann et al. (1991) studied this question.

synapsesocial.com/papers/6a70b63e26770c2b8de0b1eehttps://doi.org/10.1126/science.2006412
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