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Microbial community study in newly established Qingcaosha Reservoir of Shanghai, China

机译:中国上海新建青草沙水库的微生物群落研究

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Qingcaosha Reservoir located at Yangtze Estuary of China is a newly constructed and one of the largest tidal reservoirs in the world, which will be an important drinking water source of Shanghai. This study aims at investigating microbial community and its shifts corresponding to different water quality during the test running period of Qingcaosha Reservoir. The results showed lower concentrations of total nitrogen (TN) and total phosphorus (TP) in the reservoir than that in Yangtze Estuary. The number of total cultivable bacteria was significantly lower in the reservoir than that of Yangtze Estuary. The denaturing gradient gel electrophoresis (DGGE) analysis showed that the dominant microbes were alpha-Proteobacteria, beta-Proteobacteria, Flavobacterium, Rheinheimera, Prochlorococcus, and Synechococcus. The quantitative PCR (q-PCR) results revealed significantly higher number of cyanobacteria and Microcystis in the reservoir during summer season. In addition, bacterial abundance positively correlated with TP concentration inside the reservoir. These results indicated that Qingcaosha Reservoir had ability to reduce the TN and TP in influent and improve the water quality overall. However, it also faced the risk of potential cyanobacteria bloom and eutrophication in Qingcaosha Reservoir where phosphorus will be the nutrient limiting factor.
机译:位于中国长江口的青草沙水库是新建的,也是世界上最大的潮汐水库之一,将成为上海重要的饮用水水源。本研究旨在调查青草沙水库试运行期间微生物群落及其与不同水质对应的变化。结果表明,储层中总氮(TN)和总磷(TP)的浓度低于长江口。水库中可培养细菌总数明显低于长江口。变性梯度凝胶电泳(DGGE)分析表明,优势微生物为α-变形杆菌,β-变形杆菌,黄杆菌,莱茵海默氏菌,原绿球菌和合成球菌。定量PCR(q-PCR)结果表明,夏季储层中的蓝细菌和微囊藻数量明显增加。此外,细菌丰度与水库内总磷浓度呈正相关。这些结果表明,青草沙水库有能力降低进水口总氮和总磷,改善整体水质。然而,在青草沙水库中,磷也将成为养分限制因子,因此也面临着潜在的蓝藻繁殖和富营养化的风险。

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