Vision is underpinned by phototransduction, a signaling cascade that converts light energy into an electrical signal. Among insects, phototransduction is best understood in Drosophila melanogaster. Comparison of D. melanogaster against three insect species found several phototransduction gene gains and losses, however, lepidopterans were not examined. Diurnal butterflies and nocturnal moths occupy different light environments and have distinct eye morphologies, which might impact the expression of their phototransduction genes. Here we investigated: 1) how phototransduction genes vary in gene gain or loss between D. melanogaster and Lepidoptera, and 2) variations in phototransduction genes between moths and butterflies. To test our predicti...
Genes underlying signal reception should evolve to maximize signal detection in a particular environ...
Numerous animal lineages have expanded and diversified the opsin-based photoreceptors in their eyes ...
[[abstract]]The butterfly Heliconius erato can see from the UV to the red part of the light spectrum...
Vision is underpinned by phototransduction, a signaling cascade that converts light energy into an e...
Diversification of lepidopteran (moth and butterfly) color vision is due to gene duplication, gene l...
<div><p>Because visual genes likely evolved in response to their ambient photic environment, the dic...
Most organisms are dependent on sensory cues from their environment for survival and reproduction. F...
Opsins, combined with a chromophore, are the primary light-sensing molecules in animals and are cruc...
Because visual genes likely evolved in response to their ambient photic environment, the dichotomy b...
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 ...
Opsin proteins covalently bind to small molecular chromophores and each protein-chromophore complex ...
Gene duplications sometimes result in large evolutionary shifts in adaptation, but often no phenotyp...
Opsin proteins covalently bind to small molecular chromophores and each protein-chromophore complex ...
A comparative approach was taken for identifying amino acid substitutions that may be under positive...
Genes underlying signal reception should evolve to maximize signal detection in a particular environ...
Numerous animal lineages have expanded and diversified the opsin-based photoreceptors in their eyes ...
[[abstract]]The butterfly Heliconius erato can see from the UV to the red part of the light spectrum...
Vision is underpinned by phototransduction, a signaling cascade that converts light energy into an e...
Diversification of lepidopteran (moth and butterfly) color vision is due to gene duplication, gene l...
<div><p>Because visual genes likely evolved in response to their ambient photic environment, the dic...
Most organisms are dependent on sensory cues from their environment for survival and reproduction. F...
Opsins, combined with a chromophore, are the primary light-sensing molecules in animals and are cruc...
Because visual genes likely evolved in response to their ambient photic environment, the dichotomy b...
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 ...
Opsin proteins covalently bind to small molecular chromophores and each protein-chromophore complex ...
Gene duplications sometimes result in large evolutionary shifts in adaptation, but often no phenotyp...
Opsin proteins covalently bind to small molecular chromophores and each protein-chromophore complex ...
A comparative approach was taken for identifying amino acid substitutions that may be under positive...
Genes underlying signal reception should evolve to maximize signal detection in a particular environ...
Numerous animal lineages have expanded and diversified the opsin-based photoreceptors in their eyes ...
[[abstract]]The butterfly Heliconius erato can see from the UV to the red part of the light spectrum...