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Human Cone Pigment Expressed in Transgenic Mice Yields Altered Vision

机译:转基因小鼠中表达的人类锥体色素产生改变的视力。

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摘要

Genetically driven alterations in the complement of retinal photopigments are fundamental steps in the evolution of vision. We sought to determine how a newly added photopigment might impact vision by studying a transgenic mouse that expresses a human cone photopigment. Electroretinogram (ERG) measurements indicate that the added pigment works well, significantly changing spectral sensitivity without deleteriously affecting the operation of the native cone pigments. Visual capacities of the transgenic mice were established in behavioral tests. The new pigment was found to provide a significant expansion of the spectral range over which mice can perceive light, thus underlining the immediate utility of acquiring a new photopigment. The transgenic mouse also has the receptor basis for a novel color vision capacity, but tests show that potential was not realized. This failure likely reflects limitations in the organizational arrangement of the mouse retina.
机译:视网膜色素的补充中的遗传驱动改变是视力进化的基本步骤。我们试图通过研究表达人锥状色素的转基因小鼠来确定新添加的色素对视觉的影响。视网膜电图(ERG)测量表明,添加的颜料效果很好,显着改变了光谱灵敏度,而不会有害地影响天然锥形颜料的操作。在行为测试中确定了转基因小鼠的视觉能力。发现这种新颜料可大大扩展小鼠可感知光的光谱范围,从而突显了立即获得一种新的色素的实用性。转基因小鼠还具有新的彩色视觉能力的受体基础,但是测试表明没有实现这种潜力。此失败可能反映了小鼠视网膜的组织安排方面的局限性。

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