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Homeobox transcription factor Six7 governs expression of green opsin genes in zebrafish

机译:同源盒转录因子Six7控制斑马鱼中绿色视蛋白基因的表达

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摘要

Colour discrimination in vertebrates requires cone photoreceptor cells in the retina, and high-acuity colour vision is endowed by a set of four cone subtypes expressing UV-, blue-, green- and red-sensitive opsins. Previous studies identified transcription factors governing cone photoreceptor development in mice, although loss of blue and green opsin genes in the evolution of mammals make it difficult to understand how high-acuity colour vision was organized during evolution and development. Zebrafish (Danio rerio) represents a valuable vertebrate model for studying colour vision as it retains all the four ancestral vertebrate cone subtypes. Here, by RT-qPCR and in situ hybridization analysis, we found that sine oculis homeobox homolog 7 (six7), a transcription factor widely conserved in ray-finned fish, is expressed predominantly in the cone photoreceptors in zebrafish at both the larval and the adult stages. TAL effector nuclease-based six7 knock-out revealed its roles in expression of green, red and blue cone opsin genes. Most prominently, the six7 deficiency caused a loss of expression of all the green opsins at both the larval and adult stages. six7 is indispensable for the development and/or maintenance of the green cones.
机译:脊椎动物的颜色区分需要视网膜中的视锥细胞感光细胞,而高敏锐的色觉则由表达紫外线,蓝,绿和红敏感视蛋白的四种视锥亚型所赋予。先前的研究确定了控制小鼠锥体感光细胞发育的转录因子,尽管哺乳动物进化过程中蓝色和绿色视蛋白基因的缺失使人们难以理解在进化和发育过程中高敏彩色视觉的组织方式。斑马鱼(Danio rerio)代表了一种用于研究色觉的有价值的脊椎动物模型,因为它保留了所有四个祖先的脊椎动物锥体亚型。在这里,通过RT-qPCR和原位杂交分析,我们发现,正弦鱼同源盒同源物7(six7)是广泛存在于有鳍鳍鱼中的转录因子,主要在斑马鱼的幼体和斑马鱼的锥体感光细胞中表达。成人阶段。 TAL效应器基于核酸酶的Six7基因敲除揭示了其在绿色,红色和蓝色视锥蛋白基因表达中的作用。最显着的是,six7缺乏导致幼虫期和成年期所有绿色视蛋白的表达丧失。 six7对于果岭的开发和/或维护是必不可少的。

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