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Targeted expression of nuclear transgenes in Chlamydomonas reinhardtii with a versatile, modular vector toolkit

机译:多功能模块化载体工具包在莱茵衣藻中靶向表达核转基因

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摘要

We present a versatile vector toolkit for nuclear transgene expression in the model green microalga Chlamydomonas reinhardtii. The vector was designed in a modular fashion which allows quick replacement of regulatory elements and genes of interest. The current toolkit comprises two antibiotic resistance markers (paromomycin and hygromycin B), five codon-optimized light emission reporters, including the Gaussia princeps luciferase, as well as bright cyan, green, yellow, and red fluorescent protein variants. The system has demonstrated robust functional flexibility with signal options to target the protein of interest to the cytoplasm, the nucleus, cellular microbodies, the chloroplast, mitochondria, or via the endoplasmic reticulum-Golgi apparatus secretory pathway into the culture medium. Successful fluorescent reporter protein fusion to C. reinhardtii Rubisco small subunit 1 was accomplished with this system. Localization of the fluorescently tagged protein was observed in the chloroplast pyrenoid via live cell fluorescence microscopy, the first report of heterologous protein localization to this cellular structure. The functionalities of the vector toolkit, the individual modular elements, as well as several combinations thereof are demonstrated in this manuscript. Due to its strategic design, this vector system can quickly be adapted to individual tasks and should therefore be of great use to address specific scientific questions requiring nuclear recombinant protein expression in C. reinhardtii.
机译:我们为模型绿色微藻莱茵衣藻(Chlamydomonas reinhardtii)中的核转基因表达提供了一种多功能的载体工具包。该载体以模块化方式设计,可以快速替换所需的调控元件和基因。当前的工具包包含两个抗生素抗性标记(巴龙霉素和潮霉素B),五个密码子优化的发光报告基因,包括高斯princeps荧光素酶以及明亮的青色,绿色,黄色和红色荧光蛋白变体。该系统具有强大的功能灵活性,并具有信号选项,可将目标蛋白质靶向细胞质,细胞核,细胞微体,叶绿体,线粒体,或通过内质网-高尔基体分泌途径进入培养基。用该系统成功地实现了将荧光报道蛋白成功地融合到莱茵衣藻小分子亚基1上。通过活细胞荧光显微镜在叶绿体类胡萝卜素中观察到了荧光标记蛋白的定位,这是异源蛋白定位到该细胞结构的第一个报道。在此手稿中演示了矢量工具包的功能,单个模块化元素及其几种组合。由于其策略性设计,该载体系统可快速适应各种任务,因此应用于解决需要在莱茵衣藻中表达核重组蛋白的特定科学问题。

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