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T<scp>HE</scp>E<scp>VOLUTION OF</scp>C<scp>OLOR</scp>V<scp>ISION IN</scp>I<scp>NSECTS</scp>

Annual Review of EntomologyPublished 1 January 2001
Adriana D. Briscoe, Lars Chıttka
Citations1,423
SJR quartileQ1
SJR score4.66
SNIP6.73

TL;DR

It is proposed that chance evolutionary processes, history, and constraints should be considered and quantifying variance between individuals and populations and using fitness measurements to test the adaptive value of traits identified in insect color vision systems are suggested.

Abstract

We review the physiological, molecular, and neural mechanisms of insect color vision. Phylogenetic and molecular analyses reveal that the basic bauplan, UV-blue-green-trichromacy, appears to date back to the Devonian ancestor of all pterygote insects. There are variations on this theme, however. These concern the number of color receptor types, their differential expression across the retina, and their fine tuning along the wavelength scale. In a few cases (but not in many others), these differences can be linked to visual ecology. Other insects have virtually identical sets of color receptors despite strong differences in lifestyle. Instead of the adaptionism that has dominated visual ecology in the past, we propose that chance evolutionary processes, history, and constraints should be considered. In addition to phylogenetic analyses designed to explore these factors, we suggest quantifying variance between individuals and populations and using fitness measurements to test the adaptive value of traits identified in insect color vision systems.

Keywords

Agricultural and Biological SciencesNeuroscienceBiochemistry, Genetics and Molecular Biology