基于着生藻类完整性指数的赤水河水生态健康评价

    Evaluation on water ecological health of Chishui River based on benthic algal biological integrity index

    • 摘要: 着生藻类群落构成和河流生态系统健康状况息息相关,分析着生藻类的完整性,可以为保护河流水生态健康提供理论依据。以干流无建坝的长江一级支流赤水河为例,在2023年3月、7月和11月对赤水河干流26个点位的着生藻类进行采样调查。运用箱线图法和相关系数法筛选指标,构建以总分单元数、Shannon-Wiener指数、细胞密度为核心参数的着生藻类生物完整性指数(Pe-IBI),选取所有采样点Pe-IBI值的95%分位数为最佳值,并将其五等分,靠近95%分位数的一等分代表点位状态最优,将其定为赤水河水生态基准值(枯水期5.53、丰水期6.01,平水期6.37),并对赤水河2023年水生态健康进行评价。运用主成分分析(PCA)和相关性分析从17个环境因子中筛选出DO,EC,DTN,TP,NH3-N为主要环境因子。运用广义可加模型(GAM)和冗余分析(RDA)对Pe-IBI核心参数细胞密度、Shannon-Wiener指数、总分单元数与主要环境因子进行分析发现,DO浓度超过10 mg/L时,蓝藻细胞密度与溶解氧浓度呈正相关;EC小于420 μs/cm时,着生藻类的细胞密度随EC增大而增大;TP浓度升高,蓝藻细胞密度迅速增加;TP,DO,EC和NH3-N增大时Shannon-Wiener指数下降,着生藻类生物多样性下降。

       

      Abstract: The composition of benthic algal communities is closely related to the health status of river ecosystems.Analyzing the composition of benthic algal communities can provide a theoretical basis for protecting the aquatic ecological health of rivers.Taking the Chishui River, a first-level tributary of the Yangtze River without damming on the main stream, as an example, benthic algae at 26 sampling points along the Chishui River main stream were sampled and surveyed in March, July, and November 2023.A benthic algal biological integrity index (Pe-IBI) was constructed with core parameters including total unit score, Shannon-Wiener index, and cell density.The 95th percentile of Pe-IBI values from all sampling sites was selected as the optimal value, and it was equally divided into five sections, in which a section closest to the 95th percentile represented the best ecological status, and was defined as the ecological baseline for the Chishui River (dry season 5.53, wet season 6.01, normal season 6.37).This baseline was used to evaluate the river′s ecological health in 2023.Principal component analysis (PCA) and correlation analysis were used to select DO, EC, DTN, TP, and NH3-N as the main environmental factors from 17 environmental factors.Generalized additive models (GAM) and redundancy analysis (RDA) were used to analyze the relationships between the core Pe-IBI parameters (cell density, Shannon-Wiener index, total taxonomic units) and the primary environmental factors.The results showed that when DO concentration exceeded 10 mg/L, cyanobacterial cell density was positively correlated with DO.When EC was less than 420 μs/cm, the cell density of benthic algae increased with increasing EC.As TP concentration increased, the cell density of cyanobacterial increased rapidly.When TP, DO, EC, and NH3-N increased, the Shannon-Wiener index decreased, leading to a decrease in benthic algal biodiversity.

       

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