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Transcriptome profiling of developing photoreceptor subtypes reveals candidate genes involved in avian photoreceptor diversification

机译:发育中的光感受器亚型的转录组分析揭示了参与禽光感受器多样化的候选基因

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摘要

Avian photoreceptors are a diverse class of neurons, comprised of four single cones, the two members of the double cone, and rods. The signaling events and transcriptional regulators driving the differentiation of these diverse photoreceptors are currently unknown. In addition, many distinctive features of photoreceptor subtypes, including spectral tuning, oil droplet size and pigmentation, synaptic targets and spatial patterning, have been well characterized, but the molecular mechanisms underlying these attributes have not been explored. To identify genes specifically expressed in distinct chicken (Gallus gallus) photoreceptor subtypes, we developed fluorescent reporters that label photoreceptor subpopulations, isolated these subpopulations using fluorescence-activated cell sorting and subjected them to next-generation sequencing. By comparing the expression profiles of photoreceptors labeled with rhodopsin, red opsin, green opsin, and violet opsin reporters, we have identified hundreds of differentially expressed genes that may underlie the distinctive features of these photoreceptor subtypes. These genes are involved in a variety of processes, including phototransduction, transcriptional regulation, cell adhesion, maintenance of intra- and extra-cellular structure, and metabolism. Of particular note are a variety of differentially expressed transcription factors, which may drive and maintain photoreceptor diversity, and cell adhesion molecules that may mediate spatial patterning of photoreceptors and act to establish retinal circuitry. These analyses provide a framework for future studies that will dissect the role of these various factors in the differentiation of avian photoreceptor subtypes.
机译:禽类光感受器是多种神经元,由四个单锥,双锥的两个成员和棒组成。当前未知驱动这些不同的感光细胞分化的信号传递事件和转录调节因子。此外,光感受器亚型的许多独特特征,包括光谱调节,油滴大小和色素沉着,突触靶标和空间模式已被很好地表征,但是尚未探究这些属性的分子机制。为了鉴定在不同的鸡(鸡)感光亚型中特异性表达的基因,我们开发了标记荧光受体亚群的荧光报告基因,使用荧光激活的细胞分选方法分离了这些亚群,并对其进行了下一代测序。通过比较用视紫红质,红色视蛋白,绿色视蛋白和紫色视蛋白报道分子标记的光感受器的表达谱,我们鉴定了数百种差异表达基因,这些基因可能是这些光感受器亚型的独特特征。这些基因涉及多种过程,包括光转导,转录调节,细胞粘附,细胞内和细胞外结构的维持以及新陈代谢。特别值得注意的是各种差异表达的转录因子,它们可以驱动和维持感光器的多样性,以及细胞粘附分子,可以介导感光器的空间模式并起到建立视网膜回路的作用。这些分析为将来的研究提供了一个框架,该框架将剖析这些不同因素在禽类感光受体亚型分化中的作用。

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