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Stochastic spineless expression creates the retinal mosaic for colour vision.

机译:随机的无脊椎表情创造出视网膜马赛克,实现彩色视觉。

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摘要

Drosophila colour vision is achieved by R7 and R8 photoreceptor cells present in every ommatidium. The fly retina contains two types of ommatidia, called 'pale' and 'yellow', defined by different rhodopsin pairs expressed in R7 and R8 cells. Similar to the human cone photoreceptors, these ommatidial subtypes are distributed stochastically in the retina. The choice between pale versus yellow ommatidia is made in R7 cells, which then impose their fate onto R8. Here we report that the Drosophila dioxin receptor Spineless is both necessary and sufficient for the formation of the ommatidial mosaic. A short burst of spineless expression at mid-pupation in a large subset of R7 cells precedes rhodopsin expression. In spineless mutants, all R7 and most R8 cells adopt the pale fate, whereas overexpression of spineless is sufficient to induce the yellow R7 fate. Therefore, this study suggests that the entire retinal mosaic required for colour vision is defined by the stochastic expression of a single transcription factor, Spineless.
机译:果蝇的色觉是通过每个眼孔中的R7和R8感光细胞实现的。果蝇视网膜含有两种类型的眼点,称为“苍白”和“黄色”,由在R7和R8细胞中表达的视紫红质对组成。与人锥体感光器相似,这些ommatidial亚型在视网膜中随机分布。在R7细胞中选择苍白还是黄色的眼球菌,然后将它们的命运施加到R8上。在这里,我们报告果蝇二恶英受体Spineless是必需的和足够的,以形成卵母细胞的马赛克。在视紫红质表达之前,在大块R7细胞的中期化up中,无脊椎表达短暂爆发。在无脊椎突变体中,所有R7和大多数R8细胞都具有苍白的命运,而无脊椎的过度表达足以诱导黄色的R7命运。因此,这项研究表明,彩色视觉所需的整个视网膜镶嵌是由单个转录因子Spineless的随机表达定义的。

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