
pmid: 16650454
Manatees are unique among the fully aquatic marine mammals in that they are herbivorous creatures, with hunting strategies restricted to grazing on sea-grasses. Since the other groups of (carnivorous) marine mammals have been found to possess various visual system adaptations to their unique visual environments, it was of interest to investigate the visual capability of the manatee. Previous work, both behavioral (Griebel & Schmid, 1996), and ultrastructural (Cohen, Tucker, & Odell, 1982; unpublished work cited by Griebel & Peichl, 2003), has suggested that manatees have the dichromatic color vision typical of diurnal mammals. This study uses molecular techniques to investigate the cone visual pigments of the manatee. The aim was to clone and sequence cone opsins from the retina, and, if possible, express and reconstitute functional visual pigments to perform spectral analysis. Both LWS and SWS cone opsins were cloned and sequenced from manatee retinae, which, upon expression and spectral analysis, had lambda(max) values of 555 and 410 nm, respectively. The expression of both the LWS and SWS cone opsin in the manatee retina is unique as both pinnipeds and cetaceans only express a cone LWS opsin.
Opsins, Color vision, Elephants, Molecular Sequence Data, Polymerase Chain Reaction, Sensory Systems, Ophthalmology, Species Specificity, Cones, Retinal Cone Photoreceptor Cells, Animals, Cattle, Amino Acid Sequence, Trichechus manatus, Retinal Pigments, Sequence Alignment, Color Perception, Visual ecology
Opsins, Color vision, Elephants, Molecular Sequence Data, Polymerase Chain Reaction, Sensory Systems, Ophthalmology, Species Specificity, Cones, Retinal Cone Photoreceptor Cells, Animals, Cattle, Amino Acid Sequence, Trichechus manatus, Retinal Pigments, Sequence Alignment, Color Perception, Visual ecology
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