Identification of srh-30 as a 2-nonanone receptor in C. elegans
Jin, Y.; Groaz, A.; Park, H.; Sternberg, P. W.
Show abstract
C. elegans detects food, mates, and danger through a large repertoire of chemosensory receptors. The volatile odorant 2-nonanone is a well-established aversive stimulus that reliably elicits avoidance chemotaxis. However, the receptor(s) responsible for its detection have not been identified. Here, we leveraged CeNGEN single-cell expression profiles to identify candidate receptors required for sensing 2-nonanone. We narrowed the list of candidate chemoreceptor genes by selecting genes expressed in the aversive amphid neurons AWB and ASH while excluding genes expressed in other amphid sensory neurons. We tested available mutants from the C. elegans Genetics Center (CGC) and identified srh-30 as a candidate required for normal 2-nonanone avoidance. Two independent srh-30 null alleles generated using CRISPR-Cas9 confirmed that loss of srh-30 causes a partial defect in 2-nonanone sensing. srh-30 promoter-driven fluorescent reporter, mKate, localized to the distal tips of AWB sensory cilia, consistent with a direct sensory role. Finally, ectopic expression of srh-30 in the attractive AWA neuron shifted the behavioral response to 2-nonanone toward neutrality, supporting srh-30 as a sensory receptor. Together, these results identify srh-30 as a sensory receptor mediating 2-nonanone-evoked avoidance and demonstrate a transcriptome-guided strategy for mapping odor receptors.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Natural variation in a glucuronosyltransferase modulates propionate sensitivity in a C. elegans propionic acidemia model 95%
- Molecular evolution of CO2-sensing ab1C neurons underlies divergent sensory responses in the Drosophila suzukii species group 95%
- Intestine-to-neuronal signaling alters risk-taking behaviors in food-deprived Caenorhabditis elegans 95%
Similar papers in this journal
- Sex-specific, pdfr-1-dependent modulation of pheromone avoidance by food abundance enables flexibility in C. elegans foraging behavior 95%
- The conserved endocannabinoid anandamide modulates olfactory sensitivity to induce hedonic feeding in C. elegans 94%
- Serotonergic modulation of walking in Drosophila 93%
Similar papers in this journal
- Dopamine signaling regulates predator-driven changes in Caenorhabditis elegans egg laying behavior 95%
- Genome-wide analysis of Smad and Schnurri transcription factors in C. elegans demonstrates widespread interaction and a function in collagen secretion 94%
- Forward genetics in C. elegans reveals genetic adaptations to polyunsaturated fatty acid deficiency 94%
Similar papers in this journal
- Microbial colonization induces histone acetylation critical for inherited gut-germline-neural signaling 94%
- XDH-1 inactivation causes xanthine stone formation in C. elegans which is inhibited by SULP-4-mediated anion exchange in the excretory cell 94%
- ADARs employ a neural-specific mechanism to regulate PQM-1 expression and survival from hypoxia 93%
Similar papers in this journal
- A Familial Alzheimers Disease Associated Mutation in Presenilin-1 Mediates Amyloid-Beta Independent Cell Specific Neurodegeneration 95%
- Peel-1 negative selection promotes screening-free CRISPR-Cas9 genome editing in Caenorhabditis elegans. 94%
- Activation of specific mushroom body output neurons inhibits proboscis extension and feeding behavior 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.