A lateralized sensory signaling pathway mediates context-dependent olfactory plasticity in <i>Caenorhabditis elegans</i>

A Anjali Pandey (Department of Biology, Brandeis University) M Maya Katz (Department of Biology, Brandeis University) S Stephen Nurrish A Alison Philbrook (Department of Biology, Brandeis University) P Piali Sengupta

Abstract

Lateralization of neuronal functions plays a critical role in regulating behavioral flexibility, but the underlying molecular mechanisms are challenging to establish at a single-neuron level. We previously showed that attraction of Caenorhabditis elegans to a medium-chain alcohol switches to avoidance in a uniform background of a second attractive odorant. This context-dependent behavioral plasticity is mediated by symmetric inversion of the odor-evoked response sign in the bilateral AWC olfactory neurons. Here, we show that this symmetric response plasticity is driven by asymmetric molecular mechanisms in the AWC neuron pair. Mutations in the gcy-12 receptor guanylyl cyclase abolish odor response plasticity only in AWC OFF ; the opposite odor-evoked response signs in AWC OFF and AWC ON in gcy-12 mutants result in these animals being behaviorally indifferent to this chemical. We find that gcy-12 is expressed, and required, in both AWC neurons to regulate odor response plasticity only in AWC OFF . We further show that disruption of AWC fate lateralization results in loss of asymmetry in the response plasticity in gcy-12 mutants. Our results indicate that symmetric neuronal response plasticity can arise from asymmetric underlying molecular mechanisms and suggest that lateralization of signaling pathways in defined conditions may enhance neuronal and behavioral flexibility.

Article Details

Volume / Issue Vol. 123, Issue 8
Published February 24, 2026
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (5)

A

Anjali Pandey

Department of Biology, Brandeis University

M

Maya Katz

Department of Biology, Brandeis University

S

Stephen Nurrish

A

Alison Philbrook

Department of Biology, Brandeis University

P

Piali Sengupta