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Different iron sources to study the physiology and biochemistry of iron metabolism in marine micro-algae

机译:不同铁源研究海洋微藻中铁代谢的生理生化

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摘要

We compared ferric EDTA, ferric citrate and ferrous ascorbate as iron sources to study iron metabolism in Ostreococcus tauri, Phaeodactlylum tricornutum and Emiliania huxleyi. Ferric EDTA was a better iron source than ferric citrate for growth and chlorophyll levels. Direct and indirect experiments showed that iron was much more available to the cells when provided as ferric citrate as compared to ferric EDTA. As a consequence, growth media with iron concentration in the range 1–100 nM were rapidly iron-depleted when ferric citrate—but not ferric EDTA was the iron source. When cultured together, P. tricornutum cells overgrew the two other species in iron-sufficient conditions, but E. huxleyi was able to compete other species in iron-deficient conditions, and when iron was provided as ferric citrate instead of ferric EDTA, which points out the critical influence of the chemical form of iron on the blooms of some phytoplankton species. The use of ferric citrate and ferrous ascorbate allowed us to unravel a kind of regulation of iron uptake that was dependent on the dayight cycles and to evidence independent uptake systems for ferrous and ferric iron, which can be regulated independently and be copper-dependent or independent. The same iron sources also allowed one to identify molecular components involved in iron uptake and storage in marine micro-algae. Characterizing the mechanisms of iron metabolism in the phytoplankton constitutes a big challenge; we show here that the use of iron sources more readily available to the cells than ferric EDTA is critical for this task.Electronic supplementary materialThe online version of this article (doi:10.1007/s10534-013-9688-1) contains supplementary material, which is available to authorized users.
机译:我们比较了EDTA铁,柠檬酸铁和抗坏血酸亚铁作为铁源,以研究tauriococcus tauri,Phaeodactlylum tricornutum和Emiliania huxleyi中的铁代谢。 EDTA铁比柠檬酸铁在生长和叶绿素水平方面更好。直接和间接实验表明,与柠檬酸铁相比,铁作为柠檬酸铁提供给细胞的可能性更大。结果,当柠檬酸铁时,铁浓度在1-100nM范围内的生长培养基会迅速耗尽铁,而铁EDTA并不是铁。当一起培养时,角铁疟原虫细胞在铁充足的条件下会过度生长另外两个物种,但是赫克斯利大肠杆菌能够在铁缺乏的条件下与其他物种竞争,当铁以柠檬酸铁而不是EDTA铁的形式提供时,排除了铁的化学形式对某些浮游植物物种开花的关键影响。柠檬酸铁和抗坏血酸亚铁的使用使我们能够解开一种依赖于昼/夜循环的铁摄取调节,并证明了独立的铁和三价铁摄取系统可以独立调节并且与铜有关或独立。相同的铁来源还使人们能够确定与海洋微藻中铁吸收和储存有关的分子成分。表征浮游植物中铁代谢的机制是一个巨大的挑战。我们在这里表明,与铁EDTA相比,使用铁源比铁EDTA更容易获得细胞。电子补充材料本文的在线版本(doi:10.1007 / s10534-013-9688-1)包含补充材料,其中适用于授权用户。

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