Motion vision is independent of color in Drosophila
- 25 March 2008
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 105 (12) , 4910-4915
- https://doi.org/10.1073/pnas.0711484105
Abstract
Whether motion vision uses color contrast is a controversial issue that has been investigated in several species, from insects to humans. We used Drosophila to answer this question, monitoring the optomotor response to moving color stimuli in WT and genetic variants. In the fly eye, a motion channel (outer photoreceptors R1-R6) and a color channel (inner photoreceptors R7 and R8) have been distinguished. With moving bars of alternating colors and high color contrast, a brightness ratio of the two colors can be found, at which the optomotor response is largely missing (point of equiluminance). Under these conditions, mutant flies lacking functional rhodopsin in R1-R6 cells do not respond at all. Furthermore, genetically eliminating the function of photoreceptors R7 and R8 neither alters the strength of the optomotor response nor shifts the point of equiluminance. We conclude that the color channel (R7/R8) does not contribute to motion detection as monitored by the optomotor response.Keywords
This publication has 55 references indexed in Scilit:
- The Perception of Motion in Chromatic StimuliBehavioral and Cognitive Neuroscience Reviews, 2005
- Molecular characterization and expression of the UV opsin in bumblebees:three ommatidial subtypes in the retina and a new photoreceptor organ in the laminaJournal of Experimental Biology, 2005
- Distinction between Color Photoreceptor Cell Fates Is Controlled by Prospero in DrosophilaDevelopmental Cell, 2003
- Convergence of parvocellular and magnocellular information channels in the primary visual cortex of the macaqueEuropean Journal of Neuroscience, 2002
- Photoreceptor subtype specification: from flies to humansSeminars in Cell & Developmental Biology, 2001
- Complete sparing of high-contrast color input to motion perception in cortical color blindnessNature Neuroscience, 1998
- Temporal mechanisms underlying flicker detection and identification for red–green and achromatic stimuliJournal of the Optical Society of America A, 1996
- Interaction of motion and color in the visual pathwaysTrends in Neurosciences, 1996
- Neuronal basis for parallel visual processing in the flyVisual Neuroscience, 1991
- Evidence for a sensitising pigment in fly photoreceptorsNature, 1977