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Iron limitation effects on nitrogen-fixing organisms with possible implications for cyanobacterial blooms

机译:对氮素固定生物的铁限制效应对蓝藻绽放的可能影响

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摘要

Cyanobacteria-dominated harmful algal blooms are increasing in occurrence. Many of the taxa contributing to these blooms are capable of fixing atmospheric nitrogen and should be favored under conditions of low nitrogen availability. Yet, synthesizing nitrogenase, the enzyme responsible for nitrogen fixation, is energetically expensive and requires substantial concentrations of iron. Phosphorus addition to nitrogen poor streams should promote nitrogen fixation, but experimental results so far have been inconclusive, suggesting that other factors may be involved in controlling this process. With iron potentially limited in many streams, we examined the influence of phosphorus-iron colimitation on the community structure of nitrogen-fixing organisms. In stream microcosms, using microscopic and molecular sequence data, we observed: (i) the greatest abundance of heterocyst forming nitrogen-fixing cyanobacteria in low nitrogen treatments with high phosphorus and iron and (ii) greater abundance of non-photosynthetic nitrogen-fixing bacteria in treatments with nitrogen compared to those without it. We also found that comparisons between molecular results and those obtained from microscopic identification provided complementary information about cyanobacterial communities. Our investigation indicates the potential for phosphorus-iron colimitation of stream nitrogen-fixing organisms.
机译:Cyanobacteria主导的有害藻类绽放在发生时正在增加。许多贡献这些盛开的分类群能够固定大气氮气,应在低氮可用性条件下青睐。然而,合成氮酶,负责氮固定的酶,具有能量昂贵并且需要大量的铁浓度。除氮气中的磷补充剂较差的缺乏物流应促进氮固定,但到目前为止的实验结果已经不确定,表明其他因素可能参与控制这一过程。在许多溪流中使用铁潜在限制,我们研究了磷 - 铁集团对氮素固定生物的群落结构的影响。在流微​​观体中,使用微观和分子序列数据,我们观察到:(i)最大丰富的杂物体在具有高磷和铁的低氮处理中形成氮气固定的蓝细菌和(ii)更大的非光合氮固定细菌与没有它的人相比,在氮气的治疗中。我们还发现分子结果与从微观识别获得的那些的比较提供了有关蓝藻群落的互补信息。我们的调查表明了流氮固定生物的磷 - 铁粘膜的可能性。

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