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RESEARCH PRODUCT
Through the eye of a lizard: hue discrimination in a lizard with ventral polymorphic coloration.
Alicia BartoloméAlicia BartoloméEnrique FontGuillem Pérez I De LanuzaJavier AbalosJavier Abalossubject
0106 biological sciences0301 basic medicineMalegenetic structuresPhysiologyWall lizardAnimal ScalesZoologyOrange (colour)Aquatic Science010603 evolutionary biology01 natural sciencesDiscrimination Learning03 medical and health sciencesbiology.animalAnimalsHue discriminationChromatic scaleDiscrimination learningMolecular BiologyEcology Evolution Behavior and SystematicsHuePolymorphism GeneticbiologyColor VisionLizardPigmentationLizardsbiology.organism_classificationPodarcis muralis030104 developmental biologyInsect ScienceAnimal Science and ZoologyFemaledescription
Colour polymorphisms are thought to be maintained by complex evolutionary processes some of which require that the colours of the alternative morphs function as chromatic signals to conspecifics. Unfortunately, a key aspect of this hypothesis has rarely been studied: whether the study species perceives its own colour variation as discrete rather than continuous. The European common wall lizard (Podarcis muralis) presents a striking colour polymorphism: the ventral surface of adults of both sexes may be coloured orange, white, yellow, or with a mosaic of scales combining two colours (orange-white, orange-yellow). Here we use a discrimination learning paradigm to test if P. muralis is capable of discriminating colour stimuli designed to match the ventral colours of conspecifics. We trained 20 lizards to eat from colour-coded wells bored in wooden blocks. Blocks had four colour-coded wells (orange, white, yellow, and an achromatic control), but only one contained food (mealworm larvae). After six trials, the lizards performed significantly better than expected by chance, showing a decrease in both the number of wells explored and the latency to finding the food. Using visual modelling techniques we found that, based on their spectral properties and the lizards’ cone sensitivities, the ventral colours of P. muralis correspond to discrete rather than continuous colour categories, and that colour discriminability (i.e. distance in perceptual space) varies depending on the morphs compared, which may have implications for signal detection and discrimination. These results suggest that P. muralis can discriminate hue differences matching their own ventral colour variation.
year | journal | country | edition | language |
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2017-09-06 | The Journal of experimental biology |