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哈尔滨城市河流夏季大型底栖动物群落与功能摄食类群特征

Characteristics of macrozoobenthos communities and functional feeding groups in urban rivers of Harbin during summer

  • 摘要: 为了解哈尔滨市典型城市河流大型底栖动物群落功能摄食类群特征,于2021年8月对哈尔滨市银水湾、发生渠、四排干、肇兰新河流域范围内12个采样点的大型底栖动物群落和水环境因子进行采样调查。研究结果表明,在4条城市河流共采集到大型底栖动物样品1 089个,隶属于4门15目35科54种/属。优势类群为纹沼螺(Parafossarulus striatulus, Y=0.06)、中华小长臂虾(Palaemonetes sinensis, Y=0.16)和划蝽科一种(Corixidae sp., Y=0.06)。大型底栖动物摄食功能类群共5种,包括捕食者、收集者、刮食者、滤食者和撕食者,分别有20、13、12、5、4种,相对丰度分别为37.04%、24.07%、22.22%、9.26%、7.40%。Spearman相关分析结果表明,影响大型底栖动物功能摄食类群的主要水环境因子为总磷,影响生态系统功能的主要水环境因子为水温、pH、溶解氧、采样水深、总氮等。研究结果可为哈尔滨市城市河流水生生物多样性评估和生态修复提供科学依据。

     

    Abstract: In order to systematically elucidate the structural characteristics and compositional traits of functional feeding groups (FFGs) within the macroinvertebrate community, intensive field sampling surveys were conducted across representative typical urban river stretches in Harbin during mid-to-late August 2021. The investigation covered 12 sampling sites across the Yinshuiwan River, the Fasheng Canal, the Sipai Canal, and the Zhaolan New River basins. During these surveys, both the macroinvertebrate community and relevant aquatic environmental factors were collected and analyzed. The results indicated that a total of 1 089 macroinvertebrate specimens were collected from the four urban rivers, belonging to 54 species or genera, 35 families, 15 orders, and 4 phyla. The dominant taxa were identified as Parafossarulus striatulus (Y=0.06), Palaemonetes sinensis (Y=0.16), and an unidentified species of the family Corixidae sp. (Y=0.06). A total of five functional feeding groups (FFGs) of macroinvertebrates were identified: predators, collector-gatherers, scrapers, filter-collectors, and shredders, comprising 20, 13, 12, 5, and 4 species (or genera), respectively. Their relative abundances were 37.04%, 24.07%, 22.22%, 9.26%, and 7.40%, respectively. The results of the Spearman correlation analysis indicated that total phosphorus was the primary aquatic environmental factor influencing the functional feeding groups of macroinvertebrates. In contrast, water temperature, pH, dissolved oxygen, sampling depth, and total nitrogen were identified as the main drivers affecting ecosystem functions. The outcomes of this study not only deepen our understanding of urban river ecosystems but also establish a robust scientific foundation for evaluating the current status and trends of aquatic biodiversity, thereby guiding the strategic planning and effective implementation of ecological restoration initiatives within the complex urban watershed of Harbin.

     

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