Olfactory processing and behavior downstream from highly selective receptor neurons (original) (raw)
References
Duchamp-Viret, P., Chaput, M.A. & Duchamp, A. Odor response properties of rat olfactory receptor neurons. Science284, 2171–2174 (1999). ArticleCAS Google Scholar
Malnic, B., Hirono, J., Sato, T. & Buck, L.B. Combinatorial receptor codes for odors. Cell96, 713–723 (1999). ArticleCAS Google Scholar
de Bruyne, M., Foster, K. & Carlson, J.R. Odor coding in the Drosophila antenna. Neuron30, 537–552 (2001). ArticleCAS Google Scholar
Hildebrand, J.G. & Shepherd, G.M. Mechanisms of olfactory discrimination: converging evidence for common principles across phyla. Annu. Rev. Neurosci.20, 595–631 (1997). ArticleCAS Google Scholar
Wilson, R.I. & Mainen, Z.F. Early events in olfactory processing. Annu. Rev. Neurosci.29, 163–201 (2006). ArticleCAS Google Scholar
Boeckh, J., Kaissling, K.E. & Schneider, D. Insect olfactory receptors. Cold Spring Harb. Symp. Quant. Biol.30, 263–280 (1965). ArticleCAS Google Scholar
Schneider, D. & Steinbrecht, R.A Checklist of insect olfactory sensilla. Symp. Zool. Soc. Lond.23, 279–297 (1968). Google Scholar
Suh, G.S. et al. A single population of olfactory sensory neurons mediates an innate avoidance behaviour in Drosophila. Nature431, 854–859 (2004). ArticleCAS Google Scholar
Friedrich, R.W. & Korsching, S.I. Chemotopic, combinatorial and noncombinatorial odorant representations in the olfactory bulb revealed using a voltage-sensitive axon tracer. J. Neurosci.18, 9977–9988 (1998). ArticleCAS Google Scholar
Mombaerts, P. Genes and ligands for odorant, vomeronasal and taste receptors. Nat. Rev. Neurosci.5, 263–278 (2004). ArticleCAS Google Scholar
Clyne, P., Grant, A., O'Connell, R. & Carlson, J.R. Odorant response of individual sensilla on the Drosophila antenna. Invert. Neurosci.3, 127–135 (1997). ArticleCAS Google Scholar
de Bruyne, M., Clyne, P.J. & Carlson, J.R. Odor coding in a model olfactory organ: the Drosophila maxillary palp. J. Neurosci.19, 4520–4532 (1999). ArticleCAS Google Scholar
Laissue, P.P. et al. Three-dimensional reconstruction of the antennal lobe in Drosophila melanogaster. J. Comp. Neurol.405, 543–552 (1999). ArticleCAS Google Scholar
Hallem, E.A., Ho, M.G. & Carlson, J.R. The molecular basis of odor coding in the Drosophila antenna. Cell117, 965–979 (2004). ArticleCAS Google Scholar
Couto, A., Alenius, M. & Dickson, B.J. Molecular, anatomical and functional organization of the Drosophila olfactory system. Curr. Biol.15, 1535–1547 (2005). ArticleCAS Google Scholar
Fishilevich, E. & Vosshall, L.B. Genetic and functional subdivision of the Drosophila antennal lobe. Curr. Biol.15, 1548–1553 (2005). ArticleCAS Google Scholar
Goldman, A.L., van der Goes van Naters, W., Lessing, D., Warr, C.G. & Carlson, J.R. Coexpression of two functional odor receptors in one neuron. Neuron45, 661–666 (2005). ArticleCAS Google Scholar
Yao, C.A., Ignell, R. & Carlson, J.R. Chemosensory coding by neurons in the coeloconic sensilla of the Drosophila antenna. J. Neurosci.25, 8359–8367 (2005). ArticleCAS Google Scholar
Hallem, E.A. & Carlson, J.R. Coding of odors by a receptor repertoire. Cell125, 143–160 (2006). ArticleCAS Google Scholar
Ng, M. et al. Transmission of olfactory information between three populations of neurons in the antennal lobe of the fly. Neuron36, 463–474 (2002). ArticleCAS Google Scholar
Wang, J.W., Wong, A.M., Flores, J., Vosshall, L.B. & Axel, R. Two-photon calcium imaging reveals an odor-evoked map of activity in the fly brain. Cell112, 271–282 (2003). ArticleCAS Google Scholar
Wilson, R.I., Turner, G.C. & Laurent, G. Transformation of olfactory representations in the Drosophila antennal lobe. Science303, 366–370 (2004). ArticleCAS Google Scholar
Shang, Y., Claridge-Chang, A., Sjulson, L., Pypaert, M. & Miesenbock, G. Excitatory local circuits and their implications for olfactory processing in the fly antennal lobe. Cell128, 601–612 (2007). ArticleCAS Google Scholar
Derby, C.D. & Ache, B.W. Quality coding of a complex odorant in an invertebrate. J. Neurophysiol.51, 906–924 (1984). ArticleCAS Google Scholar
Anton, S. & Hansson, B.S. Central processing of sex pheromone, host odour, and oviposition deterrent information by interneurons in the antennal lobe of female Spodoptera littoralis (Lepidoptera: Noctuidae). J. Comp. Neurol.350, 199–214 (1994). ArticleCAS Google Scholar
Boeckh, J. & Boeckh, V. Threshold and odor specificity of pheromone-sensitive neurons in the deutocerebrum of Antheraea pernyi and A. polyphemus (Saturnidae). J. Comp. Physiol. [A]132, 235–242 (1979). ArticleCAS Google Scholar
Christensen, T.A., Mustaparta, H. & Hildebrand, J.G. Chemical communication in heliothine moths. II. Central processing of intra- and interspecific olfactory messages in the male corn earworm moth Heliocoverpa zea. J. Comp. Physiol. [A]169, 259–274 (1991). Article Google Scholar
Vickers, N.J., Christensen, T.A. & Hildebrand, J.G. Combinatorial odor discrimination in the brain: attractive and antagonist odor blends are represented in distinct combinations of uniquely identifiable glomeruli. J. Comp. Neurol.400, 35–56 (1998). ArticleCAS Google Scholar
Guerenstein, P.G., Christensen, T.A. & Hildebrand, J.G. Sensory processing of ambient CO2 information in the brain of the moth Manduca sexta. J. Comp. Physiol. A Neuroethol. Sens. Neural. Behav. Physiol.190, 707–25 (2004). Article Google Scholar
Lin, D.Y., Zhang, S-Z., Block, E. & Katz, L.C. Encoding social signals in the mouse main olfactory bulb. Nature434, 470–477 (2005). ArticleCAS Google Scholar
Christensen, T.A. & Hildebrand, J.G. Pheromonal and host-odor processing in the insect antennal lobe: how different? Curr. Opin. Neurobiol.12, 393–399 (2002). ArticleCAS Google Scholar
Baxi, K.N., Dorries, K.M. & Eisthen, H.L. Is the vomeronasal system really specialized for detecting pheromones? Trends Neurosci.29, 1–7 (2006). ArticleCAS Google Scholar
Xu, P., Atkinson, R., Jones, D.N. & Smith, D.P. Drosophila OBP LUSH is required for activity of pheromone-sensitive neurons. Neuron45, 193–200 (2005). ArticleCAS Google Scholar
Ha, T.S. & Smith, D.P. A pheromone receptor mediates 11-_cis_-vaccenyl acetate–induced responses in Drosophila. J. Neurosci.26, 8727–8733 (2006). ArticleCAS Google Scholar
Light, D.M., Jang, E.B., Binder, R.G., Flath, R.A. & Kint, S. Minor and intermediate components enhance attraction of female Mediterranean fruit flies to natural male odor pheromone and its synthetic major components. J. Chem. Ecol.25, 2757–2777 (1999). ArticleCAS Google Scholar
Vinje, W.E. & Gallant, J.L. Sparse coding and decorrelation in primary visual cortex during natural vision. Science287, 1273–1276 (2000). ArticleCAS Google Scholar
Bartelt, R.J., Schaner, A.M. & Jackson, L.L. _cis_-Vaccenyl acetate as an aggregation pheromone in Drosophila melanogaster. J. Chem. Ecol.11, 1747–1756 (1985). ArticleCAS Google Scholar
Jefferis, G.S. et al. Developmental origin of wiring specificity in the olfactory system of Drosophila. Development131, 117–130 (2004). ArticleCAS Google Scholar
Marin, E.C., Jefferis, G.S., Komiyama, T., Zhu, H. & Luo, L. Representation of the glomerular olfactory map in the Drosophila brain. Cell109, 243–255 (2002). ArticleCAS Google Scholar
Marin, E.C., Watts, R.J., Tanaka, N.K., Ito, K. & Luo, L. Developmentally programmed remodeling of the Drosophila olfactory circuit. Development132, 725–737 (2005). ArticleCAS Google Scholar
Stockinger, P., Kvitsiani, D., Rotkopf, S., Tirian, L. & Dickson, B.J. Neural circuitry that governs Drosophila male courtship behavior. Cell121, 795–807 (2005). ArticleCAS Google Scholar
Manoli, D.S. et al. Male-specific fruitless specifies the neural substrates of Drosophila courtship behaviour. Nature436, 395–400 (2005). ArticleCAS Google Scholar
Dulac, C. & Wagner, S. Genetic analysis of brain circuits underlying pheromone signaling. Annu. Rev. Genet.40, 449–467 (2006). ArticleCAS Google Scholar
Shanbhag, S.R., Muller, B. & Steinbrecht, R.A. Atlas of olfactory organs of Drosophila melanogaster. 1. Types, external organization, innervation and distribution of olfactory sensilla. Int. J. Insect Morphol. Embryol.28, 377–397 (1999). Article Google Scholar
Sankaranarayanan, S. & Ryan, T.A. Real-time measurements of vesicle-SNARE recycling in synapses of the central nervous system. Nat. Cell Biol.2, 197–204 (2000). ArticleCAS Google Scholar
Pologruto, T.A., Yasuda, R. & Svoboda, K. Monitoring neural activity and [Ca2+] with genetically encoded Ca2+ indicators. J. Neurosci.24, 9572–9579 (2004). ArticleCAS Google Scholar
Wilson, R.I. & Laurent, G. Role of GABAergic inhibition in shaping odor-evoked spatiotemporal patterns in the Drosophila antennal lobe. J. Neurosci.25, 9069–9079 (2005). ArticleCAS Google Scholar
Fishilevich, E. et al. Chemotaxis behavior mediated by single larval olfactory neurons in Drosophila. Curr. Biol.15, 2086–2096 (2005). ArticleCAS Google Scholar
Stensmyr, M.C., Dekker, T. & Hansson, B.S. Evolution of the olfactory code in the Drosophila melanogaster subgroup. Proc. R. Soc. Lond. B270, 2333–2340 (2003). Article Google Scholar