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Nutrient interactions between phytoplankton and bacterioplankton under different carbon dioxide regimes

机译:不同二氧化碳条件下浮游植物与浮游植物之间的营养相互作用

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摘要

Light, nutrients, temperature, pH, and salinity are important factors in controlling the growth of phytoplankton and bacterioplankton. Supply of key nutrients to these communities can result in mutualistic or competitive relationships between bacterioplankton and phytoplankton. In this study, we investigated growth and uptake of nutrients by the marine prasinophyte flagellate Tetraselmis chui (strain PLY429) in the presence and absence of a community of bacterioplankton at two pH levels. Growth of PLY429 and total nutrient uptake were calculated for each treatment. The addition of bacterioplankton resulted in lower growth rates of PLY429, but the removal of ammonium was greater in those cultures with bacterioplankton present. The division rate of PLY429 was affected by pH; however, pH changes did not result in different uptake rates of nitrate, ammonium, or phosphate by the mixed algal and bacterial assemblage. These findings suggest that bacterioplankton and phytoplankton were competing for ammonium and that a lower pH resulted in more rapid algal growth.
机译:光,营养,温度,pH和盐度是控制浮游植物和浮游细菌生长的重要因素。向这些群落提供关键营养素可能导致浮游植物与浮游植物之间的相互关系或竞争关系。在这项研究中,我们调查了在两个pH值下是否存在浮游生物群落的情况下,海洋古植物鞭毛鞭毛Tetraselmis chui(菌株PLY429)的生长和营养吸收。计算每种处理的PLY429的生长和总养分吸收。浮游细菌的添加导致PLY429的生长速率降低,但是在那些存在浮游细菌的培养物中,氨的去除率更高。 PLY429的分配率受pH的影响;但是,pH的变化并不会导致藻类和细菌的混合吸收对硝酸盐,铵盐或磷酸盐的吸收率不同。这些发现表明,浮游细菌和浮游植物正在竞争铵,而较低的pH值导致藻类生长更快。

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