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Titlebook: Evolution of Visual and Non-visual Pigments; David M. Hunt,Mark W. Hankins,N. Justin Marshall Book 2014 Springer Science+Business Media Ne

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Visual Photopigment Evolution in Speciation,and where they likely have driven speciation. This review concludes that more examples are needed to identify instances where visual pigment evolution contributes to speciation and to determine how frequently sensory drive is at work.
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Insect Photopigments: Photoreceptor Spectral Sensitivities and Visual Adaptations,ies and flies. Although the main focus is on the properties of visual pigments, considerable attention is also given to other photostable filter pigments that importantly modify the spectral properties of the photoreceptors. The sexual dimorphism of the filter pigments results in the sexual dimorphism of photoreceptor spectral sensitivities.
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Ergebnisse der Chirurgie und Orthopädieopsin exists as two distinct gene lineages, namely the m-class and x-class (“.-like”), and both are expressed in many different tissues, including the eyes, skin, fins, gills, brain and pineal gland; however, the functional roles mediated by melanopsin in these “lower” vertebrates remain to be fully
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Ergebnisse der Chirurgie und Orthopädie tuned to the biological task in which they are involved. Examination of the classes of opsin involved reveals a range of adaptions particularly in spectral sensitivity, chromophore handling and signalling mechanisms. The loss of extraocular light detection in the mammals is associated with an evolu
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The Evolution and Function of Melanopsin in Craniates,opsin exists as two distinct gene lineages, namely the m-class and x-class (“.-like”), and both are expressed in many different tissues, including the eyes, skin, fins, gills, brain and pineal gland; however, the functional roles mediated by melanopsin in these “lower” vertebrates remain to be fully
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The Evolution of Non-visual Photopigments in the Central Nervous System of Vertebrates, tuned to the biological task in which they are involved. Examination of the classes of opsin involved reveals a range of adaptions particularly in spectral sensitivity, chromophore handling and signalling mechanisms. The loss of extraocular light detection in the mammals is associated with an evolu
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