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Green algal over cyanobacterial dominance promoted with nitrogen and phosphorus additions in a mesocosm study at Lake Taihu, China

机译:在中国太湖的中观研究中,氮和磷的添加促进了蓝藻对蓝藻优势的控制

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Enrichment of waterways with nitrogen (N) and phosphorus (P) has accelerated eutrophication and promoted cyanobacterial blooms worldwide. An understanding of whether cyanobacteria maintain their dominance under accelerated eutrophication will help predict trends and provide rational control measures. A mesocosm experiment was conducted under natural light and temperature conditions in Lake Taihu, China. It revealed that only N added to lake water promoted growth of colonial and filamentous cyanobacteria (Microcystis, Pseudoanabaena and Planktothrix) and single-cell green algae (Cosmarium, Chlorella, and Scenedesmus). Adding P alone promoted neither cyanobacteria nor green algae significantly. N plus P additions promoted cyanobacteria and green algae growth greatly. The higher growth rates of green algae vs. cyanobacteria in N plus P additions resulted in the biomass of green algae exceeding that of cyanobacteria. This indicates that further enrichment with N plus P in eutrophic water will enhance green algae over cyanobacterial dominance. However, it does not mean that eutrophication problems will cease. On the contrary, the risk will increase due to increasing total phytoplankton biomass.
机译:氮(N)和磷(P)对水路的富集加速了富营养化,并促进了全世界的蓝藻水华。了解蓝细菌是否在加速富营养化下保持其优势将有助于预测趋势并提供合理的控制措施。在中国太湖自然光和温度条件下进行了介观试验。结果表明,仅向湖水中添加的氮促进了结肠和丝状蓝细菌(微囊藻,假单胞菌属和浮游藻类)和单细胞绿藻(,、绿藻和Scenedesmus)的生长。单独添加P不会显着促进蓝藻和绿藻。 N + P的添加大大促进了蓝藻和绿藻的生长。 N + P添加中绿藻相对于蓝细菌的较高生长速率导致绿藻的生物量超过蓝细菌的生物量。这表明在富营养化水中用N + P进一步富集将增强绿藻,超过蓝藻的优势。但是,这并不意味着富营养化问题将停止。相反,由于浮游植物总生物量增加,风险将增加。

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