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京杭大运河天津段着生藻类群落结构与水环境的关系

Multivariate analysis of the relationship between periphyton community structure and water environment factors in Tianjin section of the Beijing-Hangzhou Grand Canal

  • 摘要: 着生藻类是重要的水生生物类群,其种类组成、优势种、密度数量以及生物多样性指数等群落特征被广泛用于监测和评价水生生态系统稳定和健康状况。根据2023年春季(5月)、夏季(7月)、秋季(9月)京杭大运河天津段16个采样点的着生藻类调查数据以及水环境指标监测数据,运用典型对应分析(CCA),探讨京杭大运河天津段着生藻类群落特征与水环境因子的关系。研究结果表明,共鉴定出着生藻类7门70种属,其中以绿藻门和蓝藻门种类为主(50种属),硅藻门种类次之(15种属);硅藻门的梅尼小环藻(Cyclotella meneghiniana)和钝脆杆藻(Fragilaria capucina)为3个季节的优势种;着生藻类密度以春季(5月)最高,为2.87×104 cells/cm2,秋季(9月)最低,为1.41×104 cells/cm2;京杭大运河天津段水质状况评价结果,春季、夏季、秋季和平均值都为轻度污染,Shannon-Wiener多样性指数和Pielou均匀度指数的评价结果显示,春季、夏季、秋季和平均值都为良好;CCA分析结果显示,影响京杭大运河天津段着生藻类优势种密度变化的主要水环境因子为水温、总氮含量、电导率和溶解氧含量。

     

    Abstract: Periphytic algae, as crucial aquatic organisms, have their community characteristics such as species composition, dominant species, density, and biodiversity indices widely utilized for monitoring and assessing the stability and health of aquatic ecosystems. Based on investigation data of periphytic algae and water environmental parameters from 16 sampling sites along the Tianjin section of the Beijing-Hangzhou Grand Canal during spring (May), summer (July), and autumn (September) 2023, this study employed Canonical Correspondence Analysis (CCA) to explore the relationships between periphytic algal community characteristics and environmental factors, as well as their spatial distribution patterns. The results revealed that 70 species belonging to 7 phyla were identified, with Chlorophyta and Cyanophyta predominating (50 species), followed by Bacillariophyta (15 species). Cyclotella meneghiniana and Fragilaria capucina from Bacillariophyta were identified as dominant species across all three seasons. The algal density peaked in spring (2.87×104 cells/cm2) and reached its lowest value in autumn (1.41×104 cells/cm2). Water quality assessments indicated light pollution levels during all seasons and on average, while the Shannon-Wiener diversity index and Pielou evenness index suggested good ecological conditions throughout the study period. CCA analysis demonstrated that water temperature, total nitrogen (TN), electrical conductivity (COND), and dissolved oxygen (DO) were the primary environmental factors influencing spatial-temporal variations of dominant periphytic algal species.

     

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