Vision plays an essential role in the life of many animals. While most mammals are night-active (nocturnal), many have adapted to novel light environments. This includes diurnal (day-active) and crepuscular (twilight-active) species. Here, we used integrative approaches to investigate the molecular evolution of 112 vision-related genes across 19 genomes representing most marsupial orders. We found that four genes (GUCA1B, GUCY2F, RGR, and SWS2) involved in retinal phototransduction likely became functionally redundant in the ancestor of marsupials, a group of largely obligate nocturnal mammals. We also show evidence of rapid evolution and positive selection of bright-light vision genes in the common ancestor of Macropus (kangaroos, wallaroo...
The ecological radiation of mammals to inhabit a variety of light environments is largely attributed...
The molecular basis of the evolution of phenotypic characters is very complex and is poorly understo...
Vertebrate color vision is best developed in fish, reptiles, and birds with four distinct cone recep...
Background: Based on evolutionary patterns of the vertebrate eye, Walls (1942) hypothesized that ear...
We studied the retinal photoreceptors in the mouse opossum Thylamys elegans, a nocturnal South Ameri...
Previous research on the evolution of vision in mammals has typically focused on the duplication and...
Studies of color vision in marsupial mammals have been very limited. Two photoreceptor genes have be...
Only two of the four cone opsin gene families found in vertebrates are represented in contemporary e...
Color vision in marsupials has recently emerged as a particularly interesting case among mammals. It...
Melanopsin confers photosensitivity to a subset of retinal ganglion cells and is responsible for man...
Color vision in marsupials has recently emerged as a particularly interesting case among mammals. It...
Although loss of short-wavelength-sensitive (SWS) cones and dichromatic color vision in mammals has ...
Research into the diversity and evolution of mammalian colour vision has become even more exciting w...
The molecular basis of the evolution of phenotypic characters is very complex and is poorly understo...
Molecular investigation of the origin of colour vision has discovered five visual pigment (opsin) ge...
The ecological radiation of mammals to inhabit a variety of light environments is largely attributed...
The molecular basis of the evolution of phenotypic characters is very complex and is poorly understo...
Vertebrate color vision is best developed in fish, reptiles, and birds with four distinct cone recep...
Background: Based on evolutionary patterns of the vertebrate eye, Walls (1942) hypothesized that ear...
We studied the retinal photoreceptors in the mouse opossum Thylamys elegans, a nocturnal South Ameri...
Previous research on the evolution of vision in mammals has typically focused on the duplication and...
Studies of color vision in marsupial mammals have been very limited. Two photoreceptor genes have be...
Only two of the four cone opsin gene families found in vertebrates are represented in contemporary e...
Color vision in marsupials has recently emerged as a particularly interesting case among mammals. It...
Melanopsin confers photosensitivity to a subset of retinal ganglion cells and is responsible for man...
Color vision in marsupials has recently emerged as a particularly interesting case among mammals. It...
Although loss of short-wavelength-sensitive (SWS) cones and dichromatic color vision in mammals has ...
Research into the diversity and evolution of mammalian colour vision has become even more exciting w...
The molecular basis of the evolution of phenotypic characters is very complex and is poorly understo...
Molecular investigation of the origin of colour vision has discovered five visual pigment (opsin) ge...
The ecological radiation of mammals to inhabit a variety of light environments is largely attributed...
The molecular basis of the evolution of phenotypic characters is very complex and is poorly understo...
Vertebrate color vision is best developed in fish, reptiles, and birds with four distinct cone recep...