Vertebrate ancient opsin photopigment spectra and the avian photoperiodic response.

In mammals, photoreception is restricted to cones, rods and a subset of retinal ganglion cells. By contrast, non-mammalian vertebrates possess many extraocular photoreceptors but in many cases the role of these photoreceptors and their underlying photopigments is unknown. In birds, deep brain photor...

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Main Authors: Davies, W, Turton, M, Peirson, S, Follett, B, Halford, S, Garcia-Fernandez, J, Sharp, P, Hankins, M, Foster, R
Format: Journal article
Language:English
Published: 2012
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author Davies, W
Turton, M
Peirson, S
Follett, B
Halford, S
Garcia-Fernandez, J
Sharp, P
Hankins, M
Foster, R
author_facet Davies, W
Turton, M
Peirson, S
Follett, B
Halford, S
Garcia-Fernandez, J
Sharp, P
Hankins, M
Foster, R
author_sort Davies, W
collection OXFORD
description In mammals, photoreception is restricted to cones, rods and a subset of retinal ganglion cells. By contrast, non-mammalian vertebrates possess many extraocular photoreceptors but in many cases the role of these photoreceptors and their underlying photopigments is unknown. In birds, deep brain photoreceptors have been shown to sense photic changes in daylength (photoperiod) and mediate seasonal reproduction. Nonetheless, the specific identity of the opsin photopigment 'sensor' involved has remained elusive. Previously, we showed that vertebrate ancient (VA) opsin is expressed in avian hypothalamic neurons and forms a photosensitive molecule. However, a direct functional link between VA opsin and the regulation of seasonal biology was absent. Here, we report the in vivo and in vitro absorption spectra (λ(max) = ~490 nm) for chicken VA photopigments. Furthermore, the spectral sensitivity of these photopigments match the peak absorbance of the avian photoperiodic response (λ(max) = 492 nm) and permits maximum photon capture within the restricted light environment of the hypothalamus. Such a correspondence argues strongly that VA opsin plays a key role in regulating seasonal reproduction in birds.
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spelling oxford-uuid:4360faba-caf7-4d78-b781-01448dacbf4a2022-03-26T14:54:59ZVertebrate ancient opsin photopigment spectra and the avian photoperiodic response.Journal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:4360faba-caf7-4d78-b781-01448dacbf4aEnglishSymplectic Elements at Oxford2012Davies, WTurton, MPeirson, SFollett, BHalford, SGarcia-Fernandez, JSharp, PHankins, MFoster, RIn mammals, photoreception is restricted to cones, rods and a subset of retinal ganglion cells. By contrast, non-mammalian vertebrates possess many extraocular photoreceptors but in many cases the role of these photoreceptors and their underlying photopigments is unknown. In birds, deep brain photoreceptors have been shown to sense photic changes in daylength (photoperiod) and mediate seasonal reproduction. Nonetheless, the specific identity of the opsin photopigment 'sensor' involved has remained elusive. Previously, we showed that vertebrate ancient (VA) opsin is expressed in avian hypothalamic neurons and forms a photosensitive molecule. However, a direct functional link between VA opsin and the regulation of seasonal biology was absent. Here, we report the in vivo and in vitro absorption spectra (λ(max) = ~490 nm) for chicken VA photopigments. Furthermore, the spectral sensitivity of these photopigments match the peak absorbance of the avian photoperiodic response (λ(max) = 492 nm) and permits maximum photon capture within the restricted light environment of the hypothalamus. Such a correspondence argues strongly that VA opsin plays a key role in regulating seasonal reproduction in birds.
spellingShingle Davies, W
Turton, M
Peirson, S
Follett, B
Halford, S
Garcia-Fernandez, J
Sharp, P
Hankins, M
Foster, R
Vertebrate ancient opsin photopigment spectra and the avian photoperiodic response.
title Vertebrate ancient opsin photopigment spectra and the avian photoperiodic response.
title_full Vertebrate ancient opsin photopigment spectra and the avian photoperiodic response.
title_fullStr Vertebrate ancient opsin photopigment spectra and the avian photoperiodic response.
title_full_unstemmed Vertebrate ancient opsin photopigment spectra and the avian photoperiodic response.
title_short Vertebrate ancient opsin photopigment spectra and the avian photoperiodic response.
title_sort vertebrate ancient opsin photopigment spectra and the avian photoperiodic response
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