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关于视觉色素模板和无脊椎动物视紫红质和变视紫红质的光谱形状。

On visual pigment templates and the spectral shape of invertebrate rhodopsins and metarhodopsins.

机构信息

Department of Neurobiophysics, University of Groningen, Groningen, The Netherlands.

出版信息

J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2010 Nov;196(11):869-78. doi: 10.1007/s00359-010-0568-7. Epub 2010 Aug 20.

Abstract

The absorbance spectra of visual pigments can be approximated with mathematical expressions using as single parameter the absorbance peak wavelength. A comparison of the formulae of Stavenga et al. in Vision Res 33:1011-1017 (1993) and Govardovskii et al. in Vis Neurosci 17:509-528 (2000) applied to a number of invertebrate rhodopsins reveals that both templates well describe the normalized α-band of rhodopsins with peak wavelength > 400 nm; the template spectra are virtually indistinguishable in an absorbance range of about three log units. The template formulae of Govardovskii et al. in Vis Neurosci 17:509-528 (2000) describe the rhodopsin spectra better for absorbances below 10(-3). The template predicted spectra deviate in the ultraviolet wavelength range from each other as well as from measured spectra, preventing a definite conclusion about the spectral shape in the wavelength range <400 nm. The metarhodopsin spectra of blowfly and fruitfly R1-6 photoreceptors derived from measured data appear to be virtually identical. The established templates describe the spectral shape of fly metarhodopsin reasonably well. However, the best fitting template spectrum slightly deviates from the experimental spectra near the peak and in the long-wavelength tail. Improved formulae for fitting the fly metarhodopsin spectra are proposed.

摘要

视觉色素的吸收光谱可以用数学表达式来近似,其中单个参数是吸收峰波长。比较 Stavenga 等人在 Vision Res 33:1011-1017(1993 年)和 Govardovskii 等人在 Vis Neurosci 17:509-528(2000 年)中的公式,应用于一些无脊椎动物视蛋白,可以发现这两个模板都很好地描述了具有大于 400nm 峰值波长的视蛋白的归一化α带;在大约三个对数单位的吸收范围内,模板光谱几乎无法区分。Govardovskii 等人在 Vis Neurosci 17:509-528(2000 年)中的模板公式在低于 10(-3)的吸收度下更好地描述了视蛋白光谱。模板预测的光谱在紫外波长范围内彼此之间以及与测量的光谱之间存在差异,这使得无法确定<400nm 波长范围内的光谱形状。从测量数据得出的果蝇和苍蝇 R1-6 光感受器的间视蛋白光谱似乎几乎相同。已建立的模板很好地描述了飞行动物间视蛋白的光谱形状。然而,最佳拟合模板光谱在峰值附近和长波长尾部略微偏离实验光谱。提出了用于拟合飞行动物间视蛋白光谱的改进公式。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e74a/2962788/9f602564a8a3/359_2010_568_Fig1_HTML.jpg

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