Spectral tuning and evolution of primate short-wavelength-sensitive visual pigments
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The phylogenetic distribution of ultraviolet sensitivity in birdsColor vision diversity and significance in primates inferred from genetic and field studiesEuarchontan Opsin Variation Brings New Focus to Primate OriginsSpectral shifts of mammalian ultraviolet-sensitive pigments (short wavelength-sensitive opsin 1) are associated with eye length and photic niche evolutionFunctional characterization of spectral tuning mechanisms in the great bowerbird short-wavelength sensitive visual pigment (SWS1), and the origins of UV/violet vision in passerines and parrotsExpression and Evolution of Short Wavelength Sensitive Opsins in Colugos: A Nocturnal Lineage That Informs Debate on Primate OriginsSpectral tuning in vertebrate short wavelength-sensitive 1 (SWS1) visual pigments: can wavelength sensitivity be inferred from sequence data?Why aye-ayes see blue.Molecular ecology and adaptation of visual photopigments in craniates.Visual Pigments, Ocular Filters and the Evolution of Snake Vision.Diversity of photoreceptor arrangements in nocturnal, cathemeral and diurnal Malagasy lemurs.Losses of functional opsin genes, short-wavelength cone photopigments, and color vision--a significant trend in the evolution of mammalian vision.S cones: Evolution, retinal distribution, development, and spectral sensitivity.Nocturnal light environments influence color vision and signatures of selection on the OPN1SW opsin gene in nocturnal lemurs.Functional preservation and variation in the cone opsin genes of nocturnal tarsiers.Cone-like rhodopsin expressed in the all-cone retina of the colubrid pine snake as a potential adaptation to diurnality.Adaptive genomic evolution of opsins reveals that early mammals flourished in nocturnal environments.Visual pigments in a palaeognath bird, the emu Dromaius novaehollandiae: implications for spectral sensitivity and the origin of ultraviolet vision.Visual ecology of true lemurs suggests a cathemeral origin for the primate cone opsin polymorphismFruit Ripening Signals and Cues in a Madagascan Dry Forest: Haptic Indicators Reliably Indicate Fruit Ripeness to Dichromatic LemursSensory integration during foraging: the importance of fruit hardness, colour, and odour to brown lemursThe Genetic and Evolutionary Drives behind Primate Color Vision
P2860
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P2860
Spectral tuning and evolution of primate short-wavelength-sensitive visual pigments
description
2012 nî lūn-bûn
@nan
2012 թուականի Յունուարին հրատարակուած գիտական յօդուած
@hyw
2012 թվականի հունվարին հրատարակված գիտական հոդված
@hy
2012年の論文
@ja
2012年論文
@yue
2012年論文
@zh-hant
2012年論文
@zh-hk
2012年論文
@zh-mo
2012年論文
@zh-tw
2012年论文
@wuu
name
Spectral tuning and evolution of primate short-wavelength-sensitive visual pigments
@ast
Spectral tuning and evolution of primate short-wavelength-sensitive visual pigments
@en
Spectral tuning and evolution of primate short-wavelength-sensitive visual pigments
@nl
type
label
Spectral tuning and evolution of primate short-wavelength-sensitive visual pigments
@ast
Spectral tuning and evolution of primate short-wavelength-sensitive visual pigments
@en
Spectral tuning and evolution of primate short-wavelength-sensitive visual pigments
@nl
prefLabel
Spectral tuning and evolution of primate short-wavelength-sensitive visual pigments
@ast
Spectral tuning and evolution of primate short-wavelength-sensitive visual pigments
@en
Spectral tuning and evolution of primate short-wavelength-sensitive visual pigments
@nl
P2860
P50
P3181
P356
P1476
Spectral tuning and evolution of primate short-wavelength-sensitive visual pigments
@en
P2093
Phyllis R Robinson
P2860
P304
P3181
P356
10.1098/RSPB.2011.0782
P407
P577
2012-01-22T00:00:00Z