Application of functional feeding groups of macroinvertebrates in highly urbanized streams

Xiaoming Peng, Xiangju Cheng, Dantong Zhu, Dong Huang
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Abstract

Urbanization is an inevitable process accompanying the economic development. However, the rapid urbanization process is posing a threat to aquatic communities and causing disruptions to river ecosystems. In highly urbanized river ecosystems, the mechanisms of human activities on the functional feeding groups (FFGs) of macroinvertebrates remain unclear, hindering the restoration of river ecosystems. This study focuses on an urban stream called the Yangmei River in Guangzhou and investigates environmental factors and macroinvertebrates in August and November 2022 and February and May 2023. Variance analysis, principal component analysis, and hierarchical cluster analysis were employed to research the temporal and spatial characteristics of FFGs. Redundancy analysis was used to explore the environmental factors influencing FFGs. Finally, ecosystem attributes were calculated based on FFG data and ratios. The results indicate that gathering-collectors dominate in the Yangmei River, leading to a transition toward a heterotrophic river system. Simultaneously, the damaged material transportation function, weakened riparian function, and poor habitat stability all reveal the fact of partial functional degradation of the Yangmei River. This study provides valuable insights into the overall functionality of the Yangmei River and contributes theoretical support for the application of FFG methods in the ecological assessment of highly urbanized rivers.
在高度城市化的溪流中应用大型无脊椎动物的功能饲养群
城市化是伴随经济发展的必然过程。然而,快速的城市化进程正在对水生生物群落构成威胁,并对河流生态系统造成破坏。在高度城市化的河流生态系统中,人类活动对大型无脊椎动物功能摄食群(FFGs)的影响机制尚不清楚,阻碍了河流生态系统的恢复。本研究以广州市杨梅河为研究对象,调查了 2022 年 8 月和 11 月以及 2023 年 2 月和 5 月的环境因素和大型无脊椎动物。研究采用了方差分析、主成分分析和层次聚类分析等方法来研究FFGs的时空特征。利用冗余分析探讨了影响 FFGs 的环境因素。最后,根据 FFG 数据和比率计算了生态系统属性。结果表明,杨梅河中采集者占主导地位,导致河流系统向异养过渡。同时,物质运输功能受损、河岸功能减弱、栖息地稳定性差等都揭示了杨梅河部分功能退化的事实。本研究为了解杨梅河的整体功能提供了宝贵的视角,为在高度城市化河流的生态评估中应用 FFG 方法提供了理论支持。
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