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Effect of phosphorus stress on Microcystis aeruginosa growth and phosphorus uptake

机译:磷胁迫对铜绿微囊藻生长和磷吸收的影响

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摘要

This study was designed to advance understanding of phosphorus regulation of Microcystis aeruginosa growth, phosphorus uptake and storage in changing phosphorus (P) conditions as would occur in lakes. We hypothesized that Microcystis growth and nutrient uptake would fit classic models by Monod, Droop, and Michaelis-Menten in these changing conditions. Microcystis grown in luxury nutrient concentrations was transferred to treatments with phosphorus concentrations ranging from 0–256 μg P∙L-1 and luxury nitrogen. Dissolved phosphorus concentration, cell phosphorus quota, P uptake rate and cell densities were measured at day 3 and 6. Results showed little relationship to predicted models. Microcystis growth was asymptotically related to P treatment from day 0–3, fitting Monod model well, but negatively related to P treatment and cell quota from day 3–6. From day 0–3, cell quota was negatively related to P treatments at <2 μg∙L-1, but increased slightly at higher P. Cell quota decreased greatly in low P treatments from day 3–6, which may have enabled high growths in low P treatments. P uptake was positively and linearly related to P treatment during both periods. Negative uptake rates and increases in measured culture phosphorus concentrations to 5 μg∙L-1 in the lowest P treatments indicated P leaked from cells into culture medium. This leakage during early stages of the experiment may have been sufficient to stimulate metabolism and use of intracellular P stores in low P treatments for rapid growth. Our study shows P regulation of Microcystis growth can be complex as a result of changing P concentrations, and this complexity may be important for modeling Microcystis for nutrient and ecosystem management.
机译:这项研究旨在加深对铜绿微囊藻生长,磷吸收和磷在不断变化的磷(P)条件下的储存的磷调控的了解,就像在湖泊中发生的那样。我们假设微囊藻的生长和养分吸收将在这些变化的条件下适合Monod,Droop和Michaelis-Menten的经典模型。以豪华营养物浓度生长的微囊藻被转移到磷浓度为0–256μgP∙L -1 和豪华氮素的处理中。在第3天和第6天测量溶解的磷浓度,细胞磷定额,P摄取速率和细胞密度。结果显示与预测模型几乎没有关系。从0-3天开始,微囊藻的生长与P处理渐近相关,与Monod模型拟合良好,但从3-6天开始,与P处理和细胞配额呈负相关。从第0天到第3天,细胞配额与<2μg∙L -1 时的P处理负相关,但在较高P时细胞配额略有增加。从第3-6天开始,低P处理中细胞配额大大减少。 ,这可能在低磷治疗中实现了高生长。在这两个时期中,磷的吸收与磷的处理成正相关且呈线性关系。在最低的P处理下,负吸收率和所测培养物中磷的浓度增加至5μg∙L -1 表明P从细胞泄漏到培养基中。在实验的早期阶段,这种渗漏可能足以刺激新陈代谢,并在低磷处理中利用细胞内的P储存来快速生长。我们的研究表明,由于磷浓度的变化,对微囊藻生长的P调节可能很复杂,这种复杂性对于为营养和生态系统管理对微囊藻进行建模可能是重要的。

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