首页> 外文期刊>Freshwater Biology >Contrasting effects of the cyanobacterium Microcystis aeruginosa on the growth and physiology of two green algae, Oocystis marsonii and Scenedesmus obliquus, revealed by flow cytometry.
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Contrasting effects of the cyanobacterium Microcystis aeruginosa on the growth and physiology of two green algae, Oocystis marsonii and Scenedesmus obliquus, revealed by flow cytometry.

机译:流式细胞仪显示,铜绿微囊藻对两种绿藻马氏囊藻和斜生藻的生长和生理的对比作用。

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摘要

Aquatic photosynthetic productivity is influenced by resource availability, resource use efficiency and interspecific interactions. In hypertrophic environments, interspecific interference is known to influence species succession. The effect of interference by phytoplankton on biomass production is very poorly understood. One hypothesis is that the development of cyanobacterial blooms is triggered by the excretion of allelopathic substances that inhibit the growth of other phytoplankton species. In this study, we analysed how the co-cultivation of the cyanobacterium Microcystis aeruginosa with two green algae (Oocystis marsonii and Scenedesmus obliquus) influences the resource use efficiency of each partner under nutrient-replete conditions. Using single-cell technologies, it was possible to quantify the efficiency of light use and the biomass gain for all three species under hypertrophic (non-limiting nutrient) conditions. The presence of M. aeruginosa resulted in growth inhibition, reduced metabolic activity and an increased quantum requirement for biomass assimilation in O. marsonii, whereas no changes were observed in S. obliquus. M. aeruginosa, on the other hand, showed an increased cell size in mixed cultures with O. marsonii. However, with respect to biomass production, M. aeruginosa did not profit from the growth inhibition of O. marsonii in the experimental period of 8 days. By contrast, the co-cultivation of M. aeruginosa with S. obliquus did not affect the physiological activity of either species. This study highlights the potential of flow cytometry to determine species-specific basic growth parameters, light-use efficiency and biomass gain during co-cultivation of different algal strains. It is further demonstrated that sorted cells can be used to analyse their macromolecular composition. The results of this study reveal very different species-specific patterns of growth kinetics and light-use-efficiency of green algae in co-cultivation experiments with a cyanobacterium.
机译:水生光合生产力受资源可用性,资源利用效率和种间相互作用的影响。在肥大环境中,种间干扰会影响物种演替。浮游植物干扰对生物量生产的影响知之甚少。一种假设是蓝藻水华的产生是由抑制其他浮游植物物种生长的化感物质的排泄引起的。在这项研究中,我们分析了铜绿微囊藻和两种绿藻(Oocystis marsonii和Scenedesmus obliquus)的共培养如何在营养丰富的条件下影响每个伙伴的资源利用效率。使用单细胞技术,可以量化在肥厚(非限制性营养)条件下所有三个物种的光利用效率和生物量增加。铜绿假单胞菌的存在导致生长抑制,代谢活性降低和马氏梭菌生物量同化的量子需求增加,而斜纹葡萄球菌未观察到变化。另一方面,铜绿假单胞菌在与马氏曲霉混合培养中显示细胞大小增加。然而,就生物质生产而言,铜绿假单胞菌在8天的试验期内没有从马氏曲霉的生长抑制中获利。相比之下,铜绿假单胞菌与斜生链霉菌的共培养不影响任何一种的生理活性。这项研究强调了流式细胞仪确定不同藻种共培养期间特定物种的基本生长参数,光利用效率和生物量增加的潜力。进一步证明,分选的细胞可用于分析其大分子组成。这项研究的结果揭示了在与蓝藻共培养实验中,绿藻的生长动力学和光利用效率的物种特异性模式非常不同。

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