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PMID: 2146698 Published · ppublish English Journal Article Research Support, U.S. Gov't, P.H.S. Review

Optimization, constraint, and history in the evolution of eyes.

The Quarterly review of biology ·Vol. 65 ·No. 3 ·1990-09-00 ·Pages 281-322

Goldsmith TH

Abstract

Several features of the evolution of eyes and photoreceptors are examined in an effort to explore the relative roles of adaptation and historical and developmental constraints. Optical design shows clear evidence of adaptation, which in some respects approaches optima predictable from physics. The primate fovea, on the other hand, illustrates how adaptation can be channeled by developmental heritage. The primary structures of opsins reveal multiple evolutionary lineages within both Drosophila and humans. The pigments of vertebrae rods comprise a subset of opsins whose evolutionary relationships map onto the phylogeny of the parent species. The evolutionary reasons for why most rod pigments absorb maximally at 500 +/- 10 nm are obscure, as there is no convincing explanation based on adaptation alone. Rods are appropriately distinguished from cones on the basis of which opsin gene is expressed. This criterion is likely to be in conflict with other definitions in phyletic lines (e.g., geckos, snakes) that have long diurnal or nocturnal histories accompanied by loss of one or more opsin genes, followed by a secondary adaptation to life in a different photic environment. Color vision--a generalizable perception associated with the spectral composition of light--is usefully distinguished from wavelength-specific behaviors. The latter are also based on multiple visual pigments and more than one spectral class of receptors but cannot be altered by learning. The distinction is particularly forceful in bees, which exhibit both kinds of behavior. The evolution of primate color vision has been shaped by historical factors involving an extensive period of early mammalian nocturnality. Birds, by contrast, have more elaborate cones and a richer set of visual pigments. Avian color space can be represented in a tetrahedron.

MeSH Terms
Amino Acid Sequence Animals Biological Evolution Color Perception/genetics,physiology Eye/anatomy & histology Eye Proteins/genetics,physiology Humans Molecular Sequence Data Ocular Physiological Phenomena Retinal Pigments/genetics,physiology Rod Opsins
Chemicals
Eye Proteins Retinal Pigments Rod Opsins
Authors & Affiliations
1 authors, click to expand affiliations / ORCID
Goldsmith T H
Department of Biology, Yale University, New Haven, Connecticut 06511.
Article Info
Journal
The Quarterly review of biology
Abbr.
Q Rev Biol
ISSN
0033-5770
Published
1990-09-00
Pages
281-322
Language
English
Region
United States
NLM ID
0376515
Subset
IM
Grants
NEI NIH HHS · EY00222 · United States
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