4.7 Article

Evolutionary history limits species' ability to match colour sensitivity to available habitat light

出版社

ROYAL SOC
DOI: 10.1098/rspb.2022.0612

关键词

visual tuning; light environment; ciliary opsin; rhabdomeric opsin; meta-analysis; lambda(max)

资金

  1. University of Arkansas
  2. Arkansas Biosciences Institute grant

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The spectrum of light that animals can see is determined by the number and sensitivity of retinal proteins called opsins. Terrestrial animals are more sensitive to shorter and longer wavelengths of light, while invertebrates are more sensitive to shorter wavelengths than vertebrates. Different habitats and species have different spectral sensitivities. Evolutionary divergence may limit the extent to which animals can adjust their visual perception.
The spectrum of light that an animal sees-from ultraviolet to far red light-is governed by the number and wavelength sensitivity of a family of retinal proteins called opsins. It has been hypothesized that the spectrum of light available in an environment influences the range of colours that a species has evolved to see. However, invertebrates and vertebrates use phylogenetically distinct opsins in their retinae, and it remains unclear whether these distinct opsins influence what animals see, or how they adapt to their light environments. Systematically using published visual sensitivity data from across animal phyla, we found that terrestrial animals are more sensitive to shorter and longer wavelengths of light than aquatic animals and that invertebrates are more sensitive to shorter wavelengths of light than vertebrates. Using phylogenetically controlled analyses, we found that closed and open canopy habitat species have different spectral sensitivities when comparing across the Metazoa and excluding habitat generalists, while deepwater animals are no more sensitive to shorter wavelengths of light than shallow-water animals. Our results suggest that animals do adapt to their light environment; however, the invertebrate-vertebrate evolutionary divergence may limit the degree to which animals can perform visual tuning.

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