0000000000328873

AUTHOR

G. Pérez I De Lanuza

showing 4 related works from this author

Colour variation between different lineages of a colour polymorphic lizard

2019

Podarcis muralisVariation (linguistics)Lizardbiology.animalZoologyAnimal Science and ZoologyBiologybiology.organism_classificationEcology Evolution Behavior and SystematicsJournal of Zoology
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Using visual modelling to study the evolution of lizard coloration: sexual selection drives the evolution of sexual dichromatism in lacertids

2012

Sexual selection has been invoked as a major force in the evolution of secondary sexual traits, including sexually dimorphic colorations. For example, previous studies have shown that display complexity and elaborate ornamentation in lizards are associated with variables that reflect the intensity of intrasexual selection. However, these studies have relied on techniques of colour analysis based on human – rather than lizard – visual perception. Here, we use reflectance spectrophotometry and visual modelling to quantify sexual dichromatism considering the overall colour patterns of lacertids, a lizard clade in which visual signalling has traditionally been underrated. These objective method…

MaleSex CharacteristicsXenonVisual perceptiongenetic structuresDichromatismbiologyPigmentationLizardZoologyLizardsBody sizeBiological EvolutionModels BiologicalReflectivitySexual dimorphismSpectrophotometrybiology.animalSexual selectionAnimalsFemaleSelection GeneticCladeEcology Evolution Behavior and SystematicsJournal of Evolutionary Biology
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The evolution of colour pattern complexity: selection for conspicuousness favours contrasting within-body colour combinations in lizards.

2015

Many animals display complex colour patterns that comprise several adjacent, often contrasting colour patches. Combining patches of complementary colours increases the overall conspicuousness of the complex pattern, enhancing signal detection. Therefore, selection for conspicuousness may act not only on the design of single colour patches, but also on their combination. Contrasting long- and short-wavelength colour patches are located on the ventral and lateral surfaces of many lacertid lizards. As the combination of long- and short-wavelength-based colours generates local chromatic contrast, we hypothesized that selection may favour the co-occurrence of lateral and ventral contrasting patc…

0106 biological sciences0301 basic medicineSignal designgenetic structuresEcologyPigmentationSpectral propertiesPhylogenetic studyColorComplementary colorsLizardsBody colourBiology010603 evolutionary biology01 natural sciencesBiological Evolution03 medical and health sciencesChromatic contrast030104 developmental biologyEvolutionary biologyAnimalsSpectral dataEcology Evolution Behavior and SystematicsSelection (genetic algorithm)PhylogenyJournal of evolutionary biology
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The role of male coloration in the outcome of staged contests in the European common wall lizard (Podarcis muralis)

2016

Colour signals play a key role in regulating the intensity and outcome of animal contests. Males of the common wall lizard (Podarcis muralis) show conspicuous ventrolateral ultraviolet (UV)-blue and black patches. In addition, some populations express a striking ventral colour polymorphism (i.e., discrete orange, white and yellow morphs). In this study, we set out to evaluate the potential signalling function of these colour patches by staging pairwise combats between 60 size-matched adult lizards (20 per morph). Combats were held in a neutral arena, with each lizard facing rivals from the three morphs in a tournament with a balanced design. We then calculated a fighting ability ranking usi…

0106 biological sciencesgenetic structuresEcologyLizardWall lizard05 social sciencesZoologyBiologybiology.organism_classification010603 evolutionary biology01 natural sciencesPodarcis muralisBehavioral NeuroscienceSexual selectionbiology.animalAgonistic behaviour0501 psychology and cognitive sciencesAnimal Science and Zoology050102 behavioral science & comparative psychologyBehaviour
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