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星鲽视网膜中多种类型视锥细胞的平行视蛋白开关:为底栖生活方式调节视觉色素组成。

Parallel opsin switches in multiple cone types of the starry flounder retina: tuning visual pigment composition for a demersal life style.

机构信息

Department of Biological Sciences, Simon Fraser University, Burnaby, British Columbia, V5A 1S6, Canada.

Department of Biology, University of Victoria, Victoria, British Columbia, V8W 2Y2, Canada.

出版信息

Sci Rep. 2018 Mar 19;8(1):4763. doi: 10.1038/s41598-018-23008-y.

Abstract

Variable expression of visual pigment proteins (opsins) in cone photoreceptors of the vertebrate retina is a primary determinant of vision plasticity. Switches in opsin expression or variable co-expression of opsins within differentiated cones have been documented for a few rodents and fishes, but the extent of photoreceptor types affected and potential functional significance are largely unknown. Here, we show that both single and double cones in the retina of a flatfish, the starry flounder (Platichthys stellatus), undergo visual pigment changes through opsin switches or variable opsin co-expression. As the post-metamorphic juvenile (i.e., the young asymmetric flatfish with both eyes on one side of the body) grows from ~5 g to ~196 g, some single cones and one member of unequal double cones switched from a visual pigment with maximum wavelength of absorbance, λ, at shorter wavelengths (437 nm and 527 nm) to one with longer λ (456 nm and 545 nm, respectively) whereas other cones had intermediate visual pigments (λ at 445 nm or 536 nm) suggesting co-expression of two opsins. The shift toward longer wavelength absorbing visual pigments was in line with maximizing sensitivity to the restricted light spectrum at greater depths and achromatic detection of overhead targets.

摘要

脊椎动物视网膜中的视色素蛋白(视蛋白)的可变表达是视觉可塑性的主要决定因素。几种啮齿动物和鱼类的分化锥体中已经记录到视蛋白表达的转换或视蛋白的可变共表达,但受影响的光感受器类型的程度和潜在的功能意义在很大程度上尚不清楚。在这里,我们表明,比目鱼(Platichthys stellatus)的视网膜中的单眼和双眼锥体都通过视蛋白转换或可变视蛋白共表达来改变视觉色素。随着变态后的幼鱼(即身体一侧有两只眼睛的不对称比目鱼)从约 5g 长到约 196g,一些单眼锥体和一对不等双眼锥体中的一个成员从具有较短波长最大吸收波长(437nm 和 527nm)的视色素转换为具有较长波长的视色素(分别为 456nm 和 545nm),而其他锥体则具有中间视色素(445nm 或 536nm 的λ),表明两个视蛋白的共表达。向更长波长吸收的视觉色素的转变符合在更大深度处最大化对受限光光谱的敏感性以及对头顶目标的非彩色检测。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6117/5859124/2fc0e6fead26/41598_2018_23008_Fig1_HTML.jpg

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