Abstract
Abstract
An animal’s ability to sense odors declines during aging, and its olfactory drive is tuned by internal states such as satiety. However, whether internal states modulate an age-dependent decline in odor sensation is unknown. To address this issue, we utilized the nematode Caenorhabditis elegans and compared their chemotaxis abilities toward attractive odorants when aged under different dietary conditions. Feeding with the standard laboratory diet, Escherichia coli attenuated the chemotaxis ability toward diacetyl, isoamyl alcohol, and benzaldehyde when aged. On the other hand, feeding with either the lactic acid bacteria Lactobacillus reuteri or food deprivation selectively maintained the chemotaxis ability toward diacetyl. Our results suggest that ingestion of E. coli causes age-dependent chemotaxis decline. The changes in chemotaxis behavior are attributed to the different expression of diacetyl receptor odr-10, and chemotaxis behavior of aged animals under food deprivation is shown to be dependent on daf-16. Our study demonstrates the molecular mechanism of how diet shapes the trajectory of age-dependent decline in chemosensory behaviors.
Publisher
Research Square Platform LLC
Reference43 articles.
1. Smell identification ability: changes with age;Doty RL;Science,1984
2. The influences of age on olfaction: a review;Doty RL;Front Psychol,2014
3. Olfaction and Aging: A Review of the Current State of Research and Future Directions;Olofsson JK;Iperception,2021
4. Collins, J. J., Huang, C., Hughes, S. & Kornfeld, K. The measurement and analysis of age-related changes in Caenorhabditis elegans. WormBook, 1–21, doi:10.1895/wormbook.1.137.1 (2008).
5. Odorant-selective genes and neurons mediate olfaction in C. elegans;Bargmann CI;Cell,1993