Odor Detection in Insects: Volatile Codes
Top Cited Papers
- 6 June 2008
- journal article
- review article
- Published by Springer Nature in Journal of Chemical Ecology
- Vol. 34 (7) , 882-897
- https://doi.org/10.1007/s10886-008-9485-4
Abstract
Insect olfactory systems present models to study interactions between animal genomes and the environment. They have evolved for fast processing of specific odorant blends and for general chemical monitoring. Here, we review molecular and physiological mechanisms in the context of the ecology of chemical signals. Different classes of olfactory receptor neurons (ORNs) detect volatile chemicals with various degrees of specialization. Their sensitivities are determined by an insect-specific family of receptor genes along with other accessory proteins. Whereas moth pheromones are detected by highly specialized neurons, many insects share sensitivities to chemical signals from microbial processes and plant secondary metabolism. We promote a more integrated research approach that links molecular physiology of receptor neurons to the ecology of odorants.Keywords
This publication has 155 references indexed in Scilit:
- Receptors and Neurons for Fly Odors in DrosophilaCurrent Biology, 2007
- Olfactory receptors on the maxillary palps of small ermine moth larvae: evolutionary history of benzaldehyde sensitivityJournal of Comparative Physiology A, 2007
- Mechanisms of Odor Receptor Gene Choice in DrosophilaNeuron, 2007
- Coding of Odors by a Receptor RepertoireCell, 2006
- Molecular, Anatomical, and Functional Organization of the Drosophila Olfactory SystemCurrent Biology, 2005
- Insect host location: a volatile situationTrends in Plant Science, 2005
- The Molecular Basis of Odor Coding in the Drosophila LarvaNeuron, 2005
- Coexpression of Two Functional Odor Receptors in One NeuronPublished by Elsevier ,2005
- A Novel Family of Divergent Seven-Transmembrane ProteinsNeuron, 1999
- A novel multigene family may encode odorant receptors: A molecular basis for odor recognitionCell, 1991