Fruits, foliage and the evolution of primate colour vision
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Open Access
- 29 March 2001
- journal article
- review article
- Published by The Royal Society in Philosophical Transactions Of The Royal Society B-Biological Sciences
- Vol. 356 (1407) , 229-283
- https://doi.org/10.1098/rstb.2000.0773
Abstract
Primates are apparently unique amongst the mammals in possessing trichromatic colour vision. However, not all primates are trichromatic. Amongst the haplorhine (higher) primates, the catarrhines possess uniformly trichromatic colour vision, whereas most of the platyrrhine species exhibit polymorphic colour vision, with a variety of dichromatic and trichromatic phenotypes within the population.It has been suggested that trichromacy in primates and the reflectance functions of certain tropical fruits are aspects of a coevolved seed–dispersal system: primate colour vision has been shaped by the need to find coloured fruits amongst foliage, and the fruits themselves have evolved to be salient to primates and so secure dissemination of their seeds. We review the evidence for and against this hypothesis and we report an empirical test: we show that the spectral positioning of the cone pigments found in trichromatic South American primates is well matched to the task of detecting fruits against a background of leaves. We further report that particular trichromatic platyrrhine phenotypes may be better suited than others to foraging for particular fruits under particular conditions of illumination; and we discuss possible explanations for the maintenance of polymorphic colour vision amongst the platyrrhines.Keywords
This publication has 118 references indexed in Scilit:
- Morphology, dendritic field size, somal size, density, and coverage of M and P retinal ganglion cells of dichromatic Cebus monkeysVisual Neuroscience, 1996
- Comparison of photoreceptor spatial density and ganglion cell morphology in the retina of human, macaque monkey, cat, and the marmosetCallithrix jacchusJournal of Comparative Neurology, 1996
- Fruit choice by red howler monkeys (Alouatta seniculus) in a tropical rain forestAmerican Journal of Primatology, 1996
- Sexual Selection and the Mismeasure of ColorThe American Naturalist, 1994
- Polymorphism of photopigments in the squirrel monkey: a sixth phenotypeProceedings of the Royal Society of London. B. Biological Sciences, 1987
- Individual variations in color vision among squirrel monkeys (Saimiri sciureus) of different geographical origins.Journal of Comparative Psychology, 1984
- Ecology of Seed DispersalAnnual Review of Ecology and Systematics, 1982
- Behavioural and microspectrophotometric measurements of colour vision in monkeysNature, 1981
- ENERGY, QUANTA, AND VISIONThe Journal of general physiology, 1942
- A Spectrophotometric Study of Reflection of Light from Leaf SurfacesBotanical Gazette, 1929