Vertebrate color vision has evolved partly through the modification of five ancestral visual opsin proteins via gene duplication, loss, and shifts in spectral sensitivity. While many vertebrates, particularly mammals, birds, and fishes, have had their visual opsin repertoires studied in great detail, testudines (turtles) and crocodylians have largely been neglected. Here I examine the genomic basis for color vision in four species of turtles and four species of crocodylians, and demonstrate that while turtles appear to vary in their number of visual opsins, crocodylians experienced a reduction in their color discrimination capacity after their divergence from Aves. Based on the opsin sequences present in their genomes and previous measureme...
Visual pigments are light sensitive receptors in the eye that form the basis of sensory visual trans...
Animal body coloration is a complex trait resulting from the interplay of multiple mechanisms. While...
We have determined the sequence and genomic organization of the genes encoding the cone visual pigme...
Vertebrate color vision has evolved partly through the modification of five ancestral visual opsin p...
Avian ketocarotenoid pigments occur in both the red retinal oil droplets that contribute to colour v...
Gecko lizards are a species-rich clade of primarily-nocturnal squamate reptiles. In geckos, adaptati...
Birds are highly visual animals with complex visual systems. In this article, we discuss the spectra...
AbstractThe visual pigments of vertebrates evolved about 500 million years ago, before the major evo...
Reptiles are a highly diverse class that consists of snakes, geckos, iguanid lizards, and chameleons...
Molecular investigation of the origin of colour vision has discovered five visual pigment (opsin) ge...
Most vertebrates use a combination of rod and cone photoreceptors to enable vision in conditions ran...
Many vertebrates achieve UV vision through a class of photoreceptors in the retina containing UV-sen...
AbstractA mammalian-like melanopsin (Opn4m) has been found in all major vertebrate classes except re...
Previous research on the evolution of vision in mammals has typically focused on the duplication and...
abstract: Birds are highly visual animals with complex visual sys-tems. In this article, we discuss ...
Visual pigments are light sensitive receptors in the eye that form the basis of sensory visual trans...
Animal body coloration is a complex trait resulting from the interplay of multiple mechanisms. While...
We have determined the sequence and genomic organization of the genes encoding the cone visual pigme...
Vertebrate color vision has evolved partly through the modification of five ancestral visual opsin p...
Avian ketocarotenoid pigments occur in both the red retinal oil droplets that contribute to colour v...
Gecko lizards are a species-rich clade of primarily-nocturnal squamate reptiles. In geckos, adaptati...
Birds are highly visual animals with complex visual systems. In this article, we discuss the spectra...
AbstractThe visual pigments of vertebrates evolved about 500 million years ago, before the major evo...
Reptiles are a highly diverse class that consists of snakes, geckos, iguanid lizards, and chameleons...
Molecular investigation of the origin of colour vision has discovered five visual pigment (opsin) ge...
Most vertebrates use a combination of rod and cone photoreceptors to enable vision in conditions ran...
Many vertebrates achieve UV vision through a class of photoreceptors in the retina containing UV-sen...
AbstractA mammalian-like melanopsin (Opn4m) has been found in all major vertebrate classes except re...
Previous research on the evolution of vision in mammals has typically focused on the duplication and...
abstract: Birds are highly visual animals with complex visual sys-tems. In this article, we discuss ...
Visual pigments are light sensitive receptors in the eye that form the basis of sensory visual trans...
Animal body coloration is a complex trait resulting from the interplay of multiple mechanisms. While...
We have determined the sequence and genomic organization of the genes encoding the cone visual pigme...