Scinovex
article Open AccessTop 10% cited

Ancient Protostome Origin of Chemosensory Ionotropic Glutamate Receptors and the Evolution of Insect Taste and Olfaction

PLoS Genetics · 2010 · Vol. 6(8) · pp. e1001064–e1001064
Vincent CrosetRaphael RytzScott F. CumminsAidan BuddDavid BrawandHenrik KaessmannToby J. GibsonRichard Benton

Abstract

Ionotropic glutamate receptors (iGluRs) are a highly conserved family of ligand-gated ion channels present in animals, plants, and bacteria, which are best characterized for their roles in synaptic communication in vertebrate nervous systems. A variant subfamily of iGluRs, the Ionotropic Receptors (IRs), was recently identified as a new class of olfactory receptors in the fruit fly, Drosophila melanogaster, hinting at a broader function of this ion channel family in detection of environmental, as well as intercellular, chemical signals. Here, we investigate the origin and evolution of IRs by comprehensive evolutionary genomics and in situ expression analysis. In marked contrast to the insect-specific Odorant Receptor family, we show that IRs are expressed in olfactory organs across Protostomia--a major branch of the animal kingdom that encompasses arthropods, nematodes, and molluscs--indicating that they represent an ancestral protostome chemosensory receptor family. Two subfamilies of IRs are distinguished: conserved "antennal IRs," which likely define the first olfactory receptor family of insects, and species-specific "divergent IRs," which are expressed in peripheral and internal gustatory neurons, implicating this family in taste and food assessment. Comparative analysis of drosophilid IRs reveals the selective forces that have shaped the repertoires in flies with distinct chemosensory preferences. Examination of IR gene structure and genomic distribution suggests both non-allelic homologous recombination and retroposition contributed to the expansion of this multigene family. Together, these findings lay a foundation for functional analysis of these receptors in both neurobiological and evolutionary studies. Furthermore, this work identifies novel targets for manipulating chemosensory-driven behaviours of agricultural pests and disease vectors.

Neurobiology and Insect Physiology ResearchInsect and Arachnid Ecology and BehaviorPlant and animal studiesBiologyIonotropic effectDrosophila melanogasterOlfactionGene familyOlfactory receptorAntennal lobeEvolutionary biologyMelanogasterIonotropic glutamate receptor

MeSH terms

AnimalsDrosophilaMultigene FamilyInsectaInvertebratesMolecular Sequence DataPhylogenySmellTasteReceptors, OdorantEvolution, MolecularInsect ProteinsReceptors, Ionotropic Glutamate

Funding

  • National Science Foundation
  • U.S. Department of Energy
  • Wellcome Trust
  • Broad Institute
  • Joint Genome Institute
  • Schweizerischer Nationalfonds zur Förderung der Wissenschaftlichen Forschung
  • Université de Lausanne
  • Boehringer Ingelheim Stiftung
  • Australian Research Council
Citations
798
FWCI
8.23
field-weighted impact
References
97
Percentile
99%
vs. same field & year
Citations per year
Related articles
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.