Because visual genes likely evolved in response to their ambient photic environment, the dichotomy between closely related nocturnal moths and diurnal butterflies forms an ideal basis for investigating their evolution. To investigate whether the visual genes of moths are associated with nocturnal dim-light environments or not, we cloned long-wavelength (R), blue (B) and ultraviolet (UV) opsin genes from 12 species of wild-captured moths and examined their evolutionary functions. Strong purifying selection appeared to constrain the functions of the genes. Dark-treatment altered the levels of mRNA expression in Helicoverpa armigera such that R and UV opsins were up-regulated after dark-treatment, the latter faster than the former. In contrast...
The adult compound eyes of passion-vine butterflies in the genus Heliconius contain one more UV opsi...
Following gene duplication events, the expression patterns of the resulting gene copies can often di...
[[abstract]]The butterfly Heliconius erato can see from the UV to the red part of the light spectrum...
Because visual genes likely evolved in response to their ambient photic environment, the dichotomy b...
<div><p>Because visual genes likely evolved in response to their ambient photic environment, the dic...
Visual genes may become inactive in species that inhabit poor light environments, and the function a...
Opsin proteins covalently bind to small molecular chromophores and each protein-chromophore complex ...
<div><p>Visual genes may become inactive in species that inhabit poor light environments, and the fu...
Vision is underpinned by phototransduction, a signaling cascade that converts light energy into an e...
Free to read Opsins are ancient molecules that enable animal vision by coupling to a vitamin-derived...
Opsins are ancient molecules that enable animal vision by coupling to a vitamin-derived chromophore ...
Opsins, combined with a chromophore, are the primary light-sensing molecules in animals and are cruc...
Opsin proteins covalently bind to small molecular chromophores and each protein-chromophore complex ...
Diversification of lepidopteran (moth and butterfly) color vision is due to gene duplication, gene l...
Gene duplications sometimes result in large evolutionary shifts in adaptation, but often no phenotyp...
The adult compound eyes of passion-vine butterflies in the genus Heliconius contain one more UV opsi...
Following gene duplication events, the expression patterns of the resulting gene copies can often di...
[[abstract]]The butterfly Heliconius erato can see from the UV to the red part of the light spectrum...
Because visual genes likely evolved in response to their ambient photic environment, the dichotomy b...
<div><p>Because visual genes likely evolved in response to their ambient photic environment, the dic...
Visual genes may become inactive in species that inhabit poor light environments, and the function a...
Opsin proteins covalently bind to small molecular chromophores and each protein-chromophore complex ...
<div><p>Visual genes may become inactive in species that inhabit poor light environments, and the fu...
Vision is underpinned by phototransduction, a signaling cascade that converts light energy into an e...
Free to read Opsins are ancient molecules that enable animal vision by coupling to a vitamin-derived...
Opsins are ancient molecules that enable animal vision by coupling to a vitamin-derived chromophore ...
Opsins, combined with a chromophore, are the primary light-sensing molecules in animals and are cruc...
Opsin proteins covalently bind to small molecular chromophores and each protein-chromophore complex ...
Diversification of lepidopteran (moth and butterfly) color vision is due to gene duplication, gene l...
Gene duplications sometimes result in large evolutionary shifts in adaptation, but often no phenotyp...
The adult compound eyes of passion-vine butterflies in the genus Heliconius contain one more UV opsi...
Following gene duplication events, the expression patterns of the resulting gene copies can often di...
[[abstract]]The butterfly Heliconius erato can see from the UV to the red part of the light spectrum...