Literature DB >> 17822578

Visual pigments of Baltic Sea fishes of marine and limnic origin.

Mirka Jokela-Määttä1, Teemu Smura, Anna Aaltonen, Petri Ala-Laurila, Kristian Donner.   

Abstract

Absorbance spectra of rods and some cones were measured by microspectrophotometry in 22 fish species from the brackish-water of the Baltic Sea, and when applicable, in the same species from the Atlantic Ocean (3 spp.), the Mediterranean Sea (1 sp.), or Finnish fresh-water lakes (9 spp.). The main purpose was to study whether there were differences suggesting spectral adaptation of rod vision to different photic environments during the short history (<10(4) years) of postglacial isolation of the Baltic Sea and the Finnish lakes. Rod absorbance spectra of the Baltic subspecies/populations of herring (Clupea harengus membras), flounder (Platichthys flesus), and sand goby (Pomatoschistus minutus) were all long-wavelength-shifted (9.8, 1.9, and 5.3 nm, respectively, at the wavelength of maximum absorbance, lambda(max)) compared with their truly marine counterparts, consistent with adaptation for improved quantum catch, and improved signal-to-noise ratio of vision in the Baltic light environment. Judged by the shape of the spectra, the chromophore was pure A1 in all these cases; hence the differences indicate evolutionary tuning of the opsin. In no species of fresh-water origin did we find significant opsin-based spectral shifts specific to the Baltic populations, only spectral differences due to varying A1/A2 chromophore ratio in some. For most species, rod lambda(max) fell within a wavelength range consistent with high signal-to-noise ratio of vision in the spectral conditions prevailing at depths where light becomes scarce in the respective waters. Exceptions were sandeels in the Baltic Sea, which are active only in bright light, and all species in a "brown" lake, where rod lambda(max) lay far below the theoretically optimal range.

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Year:  2007        PMID: 17822578     DOI: 10.1017/S0952523807070459

Source DB:  PubMed          Journal:  Vis Neurosci        ISSN: 0952-5238            Impact factor:   3.241


  10 in total

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2.  Individual variation in foraging behavior reveals a trade-off between flexibility and performance of a top predator.

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4.  Population-scale sequencing reveals genetic differentiation due to local adaptation in Atlantic herring.

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5.  Visual sensitivity of deepwater fishes in Lake Superior.

Authors:  Kelly A Harrington; Thomas R Hrabik; Allen F Mensinger
Journal:  PLoS One       Date:  2015-02-03       Impact factor: 3.240

6.  Eye spectral sensitivity in fresh- and brackish-water populations of three glacial-relict Mysis species (Crustacea): physiology and genetics of differential tuning.

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9.  Lake and sea populations of Mysis relicta (Crustacea, Mysida) with different visual-pigment absorbance spectra use the same A1 chromophore.

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10.  Comparative visual ecophysiology of mid-Atlantic temperate reef fishes.

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  10 in total

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