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Complexation of iron by microbial siderophores and effects of iron chelates on the growth of marine microalgae causing red tides

机译:微生物铁载体与铁的络合以及铁螯合物对引起赤潮的海洋微藻生长的影响

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The growth rates of 13 species of abundant red tide algae in media with different iron species complexed with microbial siderophores (Ferrichrome and Ferrioxamine) and Fe-Catechol were investigated. Our study demonstrated that the Fe-chelates (at molar ratios = 1:1) were bioavailable to some red tide species. In Fe-Catechol medium, growth was observed for the raphidophyte Heterosigma akashiwo, the dinoflagellates Heterocapsa circularisquama and Heterocapsa triquetra, the diatom Ditylum brightwellii, the cryptophyte Rhodomonas ovalis, the chlorophyte Oltmannsiellopsis viridis, and the haptophyte Cricosphaera roscoffensis. In Ferrioxamine medium, we found the growth of the dinoflagellate Karenia mikimotoi, the diatom Ditylum brightwellii, and the cryptophyte Rhodomonas ovalis. But, the existence of higher ligand concentrations (molar ratios >= 1:10) decreased the growth rates of most red tide species that were examined. Furthermore, all red tide species examined were not able to grow in Ferrichrome medium. In particular, the Chattonella species examined did not grow in the presence of Fe-chelates. These results suggest that bioavailability of iron depends not only on ligand species, but also on the concentration of the ligands; moreover, microbial siderophores may play an important role in controlling the uptake of iron complexed with organic materials that exist in coastal water and the formation of red tides in coastal areas.
机译:研究了13种丰富的赤潮藻类在不同铁物种与微生物铁载体(铁铬铁和铁氧胺)和邻苯二酚复合的培养基中的生长速率。我们的研究表明,铁螯合物(摩尔比= 1:1)对某些赤潮物种具有生物利用度。在Fe-儿茶酚培养基中,观察到了斜纹藻类杂种akashiwo,鞭毛藻类杂种异鳞藻和杂藻类杂藻,硅藻Ditylum Brightwellii,隐藻类卵圆形Rhodomonas,绿藻类植物Oltmannteellosielloss viridis和七足类植物。在铁氧嘧啶培养基中,我们发现了鞭毛藻,三鞭毛硅藻,Ditylum Brightwellii硅藻和隐孢子卵红景天的生长。但是,较高的配体浓度(摩尔比> = 1:10)的存在降低了所检查的大多数赤潮物种的生长速率。此外,检查的所有赤潮物种均不能在Ferrichrome培养基中生长。特别是,在铁螯合物存在的情况下,所检查的查通氏菌种并未生长。这些结果表明,铁的生物利用度不仅取决于配体种类,还取决于配体的浓度。此外,微生物铁载体可能在控制铁与沿海水体中存在的有机物质络合的吸收以及沿海地区赤潮的形成中起重要作用。

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