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Photosynthetic architecture differs in coastal and oceanic diatoms

机译:沿海和海洋硅藻的光合结构不同

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Diatoms are a key taxon of eukaryotic phytoplankton and a major contributor to global carbon fixation(1). They are ubiquitous in the marine ecosystem despite marked gradients in environmental properties, such as dissolved iron concentrations, between coastal and oceanic waters. Previous studies have shown that offshore species of diatoms and other eukaryotic algae have evolved lower iron requirements to subsist in iron-poor oceanic waters, but the biochemical mechanisms responsible for their decreased iron demand are unknown(2,3). Here we show, using laboratory-cultured model species, a fundamental difference between a coastal and an oceanic diatom in their photosynthetic architecture. Specifically, the oceanic diatom had up to fivefold lower photosystem I and up to sevenfold lower cytochrome b(6)f complex concentrations than a coastal diatom. These changes to the photosynthetic apparatus markedly decrease the cellular iron requirements of the oceanic diatom but not its photosynthetic rates. However, oceanic diatoms might have also sacrificed their ability to acclimate to rapid fluctuations in light intensity-a characteristic of dynamic and turbid coastal waters. We suggest that diatoms, and probably other eukaryotic algal taxa, exploited this difference in the underwater light climate between oceanic and coastal waters, enabling them to decrease their iron requirements without compromising photosynthetic capacity. This adaptation probably facilitated the colonization of the open ocean by diatoms, and contributes to their persistence in this iron-impoverished environment.
机译:硅藻是真核浮游植物的关键分类单位,也是全球碳固定的主要贡献者(1)。它们在海洋生态系统中无处不在,尽管沿海和海洋水域之间的环境特性(例如溶解的铁浓度)明显不同。先前的研究表明,硅藻和其他真核藻类的近海物种已经进化出较低的铁需求量,可以在贫铁的海洋水中生存,但是导致其铁需求减少的生化机制尚不清楚(2,3)。在这里,我们展示了使用实验室培养的模型物种,沿海和海洋硅藻在其光合结构上的根本区别。具体而言,海洋硅藻的光系统I含量最高比沿海硅藻低了五倍,而细胞色素b(6)f的复合物浓度却低了七倍。光合作用装置的这些变化显着降低了海洋硅藻的细胞铁需求量,但并未降低其光合速率。但是,海洋硅藻也可能已经牺牲了其适应光强快速波动的能力,这是动态且浑浊的沿海水域的特征。我们建议,硅藻,以及其他可能的真核藻类群,都利用了海洋和沿海水域在水下光环境中的这种差异,从而使它们能够在不损害光合能力的情况下减少铁的需求。这种适应可能促进了硅藻对开放海洋的定居,并有助于它们在铁贫瘠的环境中的持久性。

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