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首页> 外文期刊>Canadian Journal of Fisheries and Aquatic Sciences >Cyanobacteria biomass in shallow eutrophic lakes is linked to the presence of iron-binding ligands
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Cyanobacteria biomass in shallow eutrophic lakes is linked to the presence of iron-binding ligands

机译:浅Eutrophic湖泊中的胞间菌生物量与铁结合配体的存在相关联

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摘要

Iron (Fe) is an important regulator of phosphorus and nitrogen use efficiency by phytoplankton. We tested the prediction that pelagic cyanobacteria biomass in surface waters of shallow eutrophic lakes with low ferric ion concentration is linked to the presence, and potential utilization, of low molecular weight Fe-binding ligands. We sampled 30 lakes in Alberta, Canada, in 2012 for nutrients, cyanobacteria biomass, Fe-binding ligands (hydroxamates and catecholates), and toxins. Bioavailable ferric ion concentration (estimated as pFe) was significantly correlated to cyanobacteria biomass (curvilinear relationship, r(2) = 0.45, P 0.05). Nonmetric multidimensional models indicated that high cyanobacteria biomass corresponded to lakes with low ferric ion concentration (pFe similar to 19), and regression tree analyses identified a threshold in ferric ion concentration (pFe = 22.1) that separated lakes with relatively low versus high cyanobacteria biomass. Where ferric ion concentration was low, hydroxamate-reactive compound concentration was positively correlated to cyanobacteria biomass. As the environment goes from higher to lower ferric ion concentration, the presence of cyanobacteria increases, and with further reduction of Fe, the environmental need for Fe-binding ligands becomes manifest.
机译:铁(Fe)是Phytoplankton的磷和氮使用效率的重要调节因子。我们测试了预测,浅Eutrophic湖泊表面水中具有低铁离子浓度的浅兴奋性湖泊表面水的生物量与低分子量Fe结合配体的存在和潜在的利用相关。我们在加拿大艾伯塔省举行了30湖,2012年为营养素,蓝藻生物质,Fe-结合配体(羟肟酸酯和儿茶酸盐)和毒素。生物可利用的铁离子浓度(估计为PFE)与蓝藻生物质(曲线关系,R(2)= 0.45,P <0.05)显着相关。非微量多维模型表明,具有低铁离子浓度(PFE类似于19)的湖泊的高胞间细菌生物量和回归树分析鉴定了具有相对低与高蓝杆菌生物量的锡的锡离子浓度(PFE = 22.1)中的阈值。在铁离子浓度低的情况下,羟胺反应性化合物浓度与蓝藻生物质呈正相关。由于环境从较高到较低的铁离子浓度,蓝藻的存在增加,并且随着Fe的进一步减少,Fe结合配体的环境需要变得显现。

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