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Differences in phytoplankton dynamics and community structure between a wet year and dry year in the Zhoucun Reservoir

机译:周村水库干湿年份浮游植物动力学和群落结构差异

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Rainfall-induced nutrient fluctuations in surface water affect phytoplankton communities and cause algal blooms. To examine this influence in the Zhoucun Reservoir, China, field surveys were performed weekly or biweekly from February 2013 (a wet year) to December 2014 (a dry year). Physical conditions, nutrient levels, and phytoplankton functional groups were investigated during monitoring. Nutrient levels increased in the summer of 2013 (TN: 0.85-2.66 mg/L; TP: 0.037-0.138 mg/L), while nitrogen deficiency occurred in the summer of 2014 (TN: 0.38-0.73 mg/L, TP: 0.044-0.079 mg/L). A cyanobacteria bloom that appeared in the summer of 2013 had the dominant phytoplankton functional groups M and Tc. In the summer of 2014, algal cell density and biomass were much lower than those during the corresponding period in 2013, and the co-dominant phytoplankton groups were F, L-0, Tc, and S2. Non-N-fixing cyanobacteria were not abundant in summer 2013 probably because of the low ratio of NO3- to NH4+, although nitrogen was also deficient. In contrast to these summer trends, little difference was noted between phytoplankton dynamics and community structure in the two winters and two springs, regardless of nutrient conditions. Redundancy analysis indicated that rainfall-induced nitrogen fluctuations were the primary factor causing phytoplankton dynamics to differ between the wet and dry year. The effects of water temperature, stratification, and light on the phytoplankton community were independent of nutrient fluctuations. This study shows that rainfall fluctuations change summer nutrient conditions and that cyanobacteria blooms are likely to occur in wet years in the Zhoucun Reservoir.
机译:降雨引起的地表水养分波动会影响浮游植物群落并引起藻华。为了研究在中国周村水库的这种影响,从2013年2月(潮湿的一年)到2014年12月(干旱的一年)每周或每两周进行一次实地调查。在监测期间调查了身体状况,营养水平和浮游植物功能组。 2013年夏季营养水平增加(TN:0.85-2.66 mg / L; TP:0.037-0.138 mg / L),而氮缺乏发生在2014年夏季(TN:0.38-0.73 mg / L,TP:0.044 -0.079 mg / L)。 2013年夏天出现的蓝藻水华具有主要的浮游植物功能群M和Tc。 2014年夏季,藻类细胞密度和生物量远低于2013年同期,浮游植物的共同优势群为F,L-0,Tc和S2。 2013年夏季,非固氮蓝细菌数量不多,这可能是由于NO3-与NH4 +的比例较低,尽管氮也很不足。与这些夏季趋势相反,无论营养条件如何,在两个冬季和两个春季中,浮游植物的动力学和群落结构之间几乎没有差异。冗余分析表明,降雨引起的氮含量波动是导致浮游植物动力学在干湿年之间有所不同的主要因素。水温,分层和光照对浮游植物群落的影响与养分波动无关。这项研究表明,降雨波动会改变夏季的养分状况,并且在周村水库的湿润年份可能会发生蓝细菌开花。

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