M. Cortesi results 19
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Habitat Specialisation Impacts Clownfish Demographic Resilience to Pleistocene Sea‐Level FluctuationsNARA Subscribed
Habitat fragmentation and loss are key threats to biodiversity, yet their impacts on marine species remain poorly understood. Clownfishes, which rely on sea anemones for shelter and reproduction, provide an interesting model to explore how ecological specialisation mediates species responses to habitat perturbations. We used whole‐genome data from 382 individuals across 10 species with varying host specialisations to reconstru...
Gene flow throughout the evolutionary history of a colour polymorphic and generalist clownfishNARA Subscribed
Even seemingly homogeneous on the surface, the oceans display high environmental heterogeneity across space and time. Indeed, different soft barriers structure the marine environment, which offers an appealing opportunity to study various evolutionary processes such as population differentiation and speciation. Here, we focus on Amphiprion clarkii (Actinopterygii; Perciformes), the most widespread of clownfishes that exhibits...
Recurrent gene flow events occurred during the diversification of clownfishes of the skunk complexNARA Subscribed
Clownfish (subfamily Amphiprioninae) are an iconic group of coral reef fish that evolved a mutualistic interaction with sea anemones, which triggered the adaptive radiation of the clade. Within clownfishes, the “skunk complex” is particularly interesting. Besides ecological speciation, interspecific gene flow and hybrid speciation are thought to have shaped the evolution of the group. We investigated the mechanisms characteriz...
Long‐wavelength‐sensitive ( lws ) opsin gene expression, foraging and visual communication in coral reef fishesNARA Subscribed
Coral reef fishes are diverse in ecology and behaviour and show remarkable colour variability. Investigating the visual pigment gene (opsin) expression in these fishes makes it possible to associate their visual genotype and phenotype (spectral sensitivities) to visual tasks, such as feeding strategy or conspecific detection. By studying all major damselfish clades (Pomacentridae) and representatives from five other coral reef...
Why UV vision and red vision are important for damselfish (Pomacentridae): structural and expression variation in opsin genesNARA Subscribed
Coral reefs belong to the most diverse ecosystems on our planet. The diversity in coloration and lifestyles of coral reef fishes makes them a particularly promising system to study the role of visual communication and adaptation. Here, we investigated the evolution of visual pigment genes (opsins) in damselfish (Pomacentridae) and examined whether structural and expression variation of opsins can be linked to ecology. Using DN...
Depth‐dependent plasticity in opsin gene expression varies between damselfish (Pomacentridae) speciesNARA Subscribed
Phenotypic plasticity plays an important role in adapting the visual capability of many animal species to changing sensory requirements. Such variability may be driven by developmental change or may result from environmental changes in light habitat, thereby improving performance in different photic environments. In this study, we examined inter‐ and intraspecific plasticity of visual sensitivities in seven damselfish species,...
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