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Isolation of photoprotective signal transduction mutants by systematic bioluminescence screening in Chlamydomonas reinhardtii

机译:通过系统性生物发光筛选分离莱茵衣藻中的光保护性信号转导突变体

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In photosynthetic organisms, photoprotection to avoid overexcitation of photosystems is a prerequisite for survival. Green algae have evolved light-inducible photoprotective mechanisms mediated by genes such as light-harvesting complex stress-related (LHCSR). Studies on the light-dependent regulation of LHCSR expression in the green alga Chlamydomonas reinhardtii have revealed that photoreceptors for blue light (phototropin) and ultraviolet light perception (UVR8) play key roles in initiating photoprotective signal transduction. Although initial light perception via phototropin or UVR8 is known to result in increased LHCSR3 and LHCSR1 gene expression, respectively, the mechanisms of signal transduction from the input (light perception) to the output (gene expression) remain unclear. In this study, to further elucidate the signal transduction pathway of the photoprotective response of green algae, we established a systematic screening protocol for UV-inducible LHCSR1 gene expression mutants using a bioluminescence reporter assay. Following random mutagenesis screening, we succeeded in isolating mutants deficient in LHCSR1 gene and protein expression after UV illumination. Further characterization revealed that the obtained mutants could be separated into 3 different phenotype groups, the "UV-specific", "LHCSR1-promoter/transcript-specific" and "general photoprotective" mutant groups, which provided further insight into photoprotective signal transduction in C. reinhardtii.
机译:在光合生物中,进行光保护以避免过度激发光系统是生存的先决条件。绿藻已经进化出了光诱导的光保护机制,这种机制是由诸如光采复应力相关(LHCSR)等基因介导的。对绿藻莱茵衣藻中LHCSR表达的光依赖性调节的研究表明,蓝光的光感受器(phototropin)和紫外光的感受器(UVR8)在启动光保护信号转导中起关键作用。尽管通过光养蛋白或UVR8进行的初始光感知分别导致LHCSR3和LHCSR1基因表达增加,但是从输入(光感知)到输出(基因表达)的信号转导机制仍不清楚。在这项研究中,为进一步阐明绿藻的光保护反应的信号转导途径,我们建立了使用生物发光报告试剂盒对紫外线诱导的LHCSR1基因表达突变体进行系统筛选的方案。经过随机诱变筛选,我们成功地分离了紫外线照射后LHCSR1基因和蛋白质表达缺陷的突变体。进一步的表征表明,所获得的突变体可分为3个不同的表型组,“ UV特异性”,“ LHCSR1启动子/转录本特异性”和“一般的光保护”突变组,这为深入了解C中的光保护信号转导提供了见解。reinhardtii。

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