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Visual Perception and Electromagnetic Conception for the Eyesight. Rhodopsin and Bacteriorhodopsin in Nano- and Biotechnologies

机译:视力的视觉感知和电磁概念。纳米和生物技术中的视紫红质和细菌视紫红质

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This article views predominately the structure and function of animal and bacterial photoreceptor pigments (rhodopsin, iodopsin, bacteriorhodopsin) and their nano- and biotechnological usage. On an example of bacterial pigment bacteriorhodopsin (BR) is described the method of its isolation from purple membranes of halophilic bacterium Halobacterium halobium by cellular autolysis by distilled water, processing of bacterial biomass by ultrasound at 22 KHz, alcohol extraction of low and high-weight molecular impurities, cellular RNA, carotenoids and lipids, the solubilization with 0.5 % (w/v) SDS-Na and subsequent fractionation by methanol and gel filtration chromatography on Sephadex G-200 Column balanced with 0.09 M Tris-borate buffer (pH = 8.35) with 0.1% (w/v) SDS-Na and 2.5 mM EDTA. Within the framework of the research the mechanism of color perception by the visual analyzer having the ability to analyze certain ranges of the optical spectrum, as colors was studied along with an analysis of the additive mixing of two colors. It was shown that in the mixing of electromagnetic waves with different wavelengths, the visual analyzer perceive them as separate or average wave length corresponding to mix color.
机译:本文主要研究动物和细菌光感受器色素(视紫红质,碘菌素,细菌视紫红质)的结构和功能及其纳米和生物技术用途。在细菌色素细菌视紫红质(BR)的一个实例中,描述了通过蒸馏水的细胞自溶作用从嗜盐细菌Halobacterium halobium的紫色膜中分离出其,通过22 KHz超声波处理细菌生物质,低重和高重酒精提取的方法分子杂质,细胞RNA,类胡萝卜素和脂质,用0.5%(w / v)SDS-Na溶解,随后通过甲醇和凝胶过滤色谱法在Sephadex G-200色谱柱上进行分离,并用0.09 M Tris-硼酸盐缓冲液(pH = 8.35)平衡)和0.1%(w / v)SDS-Na和2.5 mM EDTA。在研究的框架内,通过视觉分析仪对颜色的感知机制具有分析光谱的某些范围的能力,因为对颜色进行了研究,并对两种颜色的加法混合进行了分析。结果表明,在混合不同波长的电磁波时,视觉分析仪将其视为与混合色相对应的单独或平均波长。

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