洱海农田库塘浮游生物与水环境季节响应研究

Seasonal dynamics of plankton and aquatic environment in farmland ponds around Erhai Lake

  • 摘要: 高原湖泊与农田库塘复合生态系统对生态健康至关重要,但农业集约化导致大量氮磷随径流进入库塘及湖泊,对浮游生物群落结构有显著影响. 本研究以洱海周边农田库塘浮游生物为对象,监测库塘水质与浮游生物群落随冬春季节变化的规律. 研究结果显示,春冬水质指标总氮(TN)质量浓度变化明显,冬季TN质量浓度显著高于春季且水质超过劣Ⅴ类水的标准. 春季浮游生物多样性高于冬季,且浮游植物春、冬优势种分别为小环藻和梅尼小环藻;浮游动物春、冬季的优势物种分别为晶囊轮虫和萼花臂尾轮虫. LEfSe分析识别出了除了优势物种以外的其他季节特有种类,春季冬季浮游生物种类有差别,在冬季的库塘中,浮游植物小舟形藻和梅尼小环藻、浮游动物中桡足类、枝角类占优可作为库塘TN污染的指示物种. Mantel检验分析表明,TN、电导率、pH 与浮游生物群落多样性显著正相关, RDA 揭示群落结构及主导的环境因素具季节差异性且冬季的环境筛选作用更强. 本研究可为库塘按季节差异化管理、控制氮负荷及保护水质提供数据与理论依据.

     

    Abstract: Farmland pounds around plateau lake play a critical role in maintaining regional ecological health. However, agricultural intensification has resulted in substantial inputs of nitrogen and phosphorus into ponds and adjacent lakes through surface runoff, thereby exerting significant impacts on plankton community structure. In this study, plankton communities in agricultural ponds surrounding Lake Erhai were investigated to characterize seasonal variations in water quality and plankton assemblages between winter and spring. The results showed pronounced seasonal differences in water quality, particularly in total nitrogen (TN) concentration. TN levels were significantly higher in winter than in spring and exceeded the threshold for Class V surface water quality standards. Plankton diversity was higher in spring than in winter. The dominant phytoplankton species were Cyclotella meneghiniana in winter and Cyclotella spp. in spring, while the dominant zooplankton species were Asplanchna spp. in spring and Brachionus calyciflorus in winter. Linear discriminant analysis effect size (LEfSe) identified additional season-specific taxa beyond the dominant species, indicating clear seasonal shifts in plankton community composition. In winter ponds, the phytoplankton taxa Navicula spp. and Cyclotella meneghiniana, together with copepods and cladocerans among zooplankton, were predominant and may serve as potential indicator taxa of TN pollution. Mantel tests revealed significant positive correlations between plankton community diversity and TN concentration, electrical conductivity, and pH. Redundancy analysis (RDA) further demonstrated that community structure and its dominant environmental drivers varied seasonally, with stronger environmental filtering effects occurring during winter. These findings provide scientific evidence for season-specific pond management, nitrogen load control, and water quality conservation in agricultural pond ecosystems surrounding plateau lakes.

     

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