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Ostreococcus tauri is a new model green alga for studying iron metabolism in eukaryotic phytoplankton

机译:tauriococcus tauri是研究真核浮游植物中铁代谢的新型绿藻

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Background Low iron bioavailability is a common feature of ocean surface water and therefore micro-algae developed original strategies to optimize iron uptake and metabolism. The marine picoeukaryotic green alga Ostreococcus tauri is a very good model for studying physiological and genetic aspects of the adaptation of the green algal lineage to the marine environment: it has a very compact genome, is easy to culture in laboratory conditions, and can be genetically manipulated by efficient homologous recombination. In this study, we aimed at characterizing the mechanisms of iron assimilation in O. tauri by combining genetics and physiological tools. Specifically, we wanted to identify and functionally characterize groups of genes displaying tightly orchestrated temporal expression patterns following the exposure of cells to iron deprivation and dayight cycles, and to highlight unique features of iron metabolism in O. tauri , as compared to the freshwater model alga Chalamydomonas reinhardtii . Results We used RNA sequencing to investigated the transcriptional responses to iron limitation in O. tauri and found that most of the genes involved in iron uptake and metabolism in O. tauri are regulated by dayight cycles, regardless of iron status. O. tauri lacks the classical components of a reductive iron uptake system, and has no obvious iron regulon. Iron uptake appears to be copper-independent, but is regulated by zinc. Conversely, iron deprivation resulted in the transcriptional activation of numerous genes encoding zinc-containing regulation factors. Iron uptake is likely mediated by a ZIP-family protein (Ot-Irt1) and by a new Fea1-related protein (Ot-Fea1) containing duplicated Fea1 domains. The adaptation of cells to iron limitation involved an iron-sparing response tightly coordinated with diurnal cycles to optimize cell functions and synchronize these functions with the dayight redistribution of iron orchestrated by ferritin, and a stress response based on the induction of thioredoxin-like proteins, of peroxiredoxin and of tesmin-like methallothionein rather than ascorbate. We briefly surveyed the metabolic remodeling resulting from iron deprivation. Conclusions The mechanisms of iron uptake and utilization by O. tauri differ fundamentally from those described in C. reinhardtii . We propose this species as a new model for investigation of iron metabolism in marine microalgae.
机译:背景技术铁的生物利用度低是海洋表层水的普遍特征,因此微藻开发了优化铁吸收和新陈代谢的原始策略。海洋微核真核绿藻Ostreococcus tauri是研究绿藻谱系适应海洋环境的生理和遗传方面的一个很好的模型:它具有非常紧凑的基因组,易于在实验室条件下培养,并且可以遗传通过有效的同源重组操作。在这项研究中,我们旨在通过结合遗传学和生理学工具来表征金枪鱼中铁的同化机制。具体来说,我们想要鉴定和功能表征在细胞暴露于铁缺乏和昼夜循环后显示紧密协调的时间表达模式的基因组,并强调与淡水相比,金牛油中铁代谢的独特特征。模型藻沙膜衣鱼。结果我们使用RNA测序研究了金枪鱼对铁限制的转录反应,发现与金针鱼的铁吸收和代谢有关的大多数基因受昼夜周期的调节,而与铁的状态无关。牛肝菌缺乏还原性铁吸收系统的经典成分,并且没有明显的铁调节子。铁的吸收似乎与铜无关,但受锌的调节。相反,铁缺乏导致许多编码含锌调节因子的基因的转录激活。铁摄取可能由ZIP家族蛋白(Ot-Irt1)和包含重复Fea1域的新Fea1相关蛋白(Ot-Fea1)介导。细胞对铁限制的适应性涉及与每日循环紧密协调的保铁反应,以优化细胞功能并使这些功能与铁蛋白精制的铁的昼/夜重新分布同步,以及基于类似硫氧还蛋白样的诱导的应激反应过氧化物酶和特斯敏样甲硫醚的蛋白质,而不是抗坏血酸。我们简要调查了铁缺乏引起的代谢重塑。结论ta。tauri对铁的吸收和利用机理与reinhardtii中描述的根本不同。我们建议将该物种作为研究海洋微藻中铁代谢的新模型。

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