Recovery and environmental driving mechanisms of attached algae communities during the near-natural restoration of urban rivers
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1:Engineering Research Center of Tropical and Subtropical Aquatic Ecological Engineering, Department of Ecology, Jinan University, Guangzhou 510632 , P.R.China ;2:Shenzhen Academy of Environmental Sciences of Guangdong Province, Shenzhen 518001 , P.R.China ;3:Guangzhou Municipal Water Affairs Bureau of Guangdong Province, Guangzhou 510640 , P.R.China ;4:Guangzhou River Monitoring Center of Guangdong Province, Guangzhou 510030 ,P.R.China

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    Abstract:

    The study of attached algae communities' assembly mechanisms is essential for understanding the restoration of river ecosystem structure and function. This study analyzed attached algae communities in three representative rivers flowing through Guangzhou—Chebei River (natural habitat), Liede River (highly canalized), and Shahe River (mixed habitat)—that are subject to a low water level operation strategy. The analysis covered four consecutive flood seasons from 2020 to 2023, focusing on the recovery and environmental drivers of these communities under near-natural restoration measures. The results showed that 193 algal species across 6 phyla, 53 families, and 90 genera were recorded, with Bacillariophyta being dominant (51.26%). No significant spatial differences in algal standing stocks were found, while significant annual differences occurred, indicating higher temporal than spatial heterogeneity. Chebei River had the highest total number of species (184), while Liede River showed the highest abundance (2.17×109 cells/m2), biomass (3.16×103 mg/m2), Shannon diversity index (3.14), and Evenness index (0.66). Annually, Liede River had the largest increases in species and Shannon diversity index (41.43% and 15.58%, respectively), and Shahe River had the highest abundance and biomass increase (92.62% and 96.53%, respectively), with Evenness index remaining stable at around 0.6. These findings highlighted the effectiveness of near-natural restoration for attached algae recovery. Niche breadth and overlap analysis indicated that the attached algal communities in the studied rivers maintained overall stable niche breadth, with niche overlap between most species being below the competition threshold (0.6). These results reflect high resource-use efficiency, low interspecific competition pressure, and a relatively stable state of the community. The standardized random rate analysis revealed that either deterministic or stochastic processes could dominate the restoration process, and their relative contributions were regulated by environmental heterogeneity. Redundancy analysis further identified that total nitrogen, total phosphorus, dissolved oxygen, water depth and flow velocity are key factors affecting the rivers attached algae communities. The findings provide empirical support and a scientific basis for the effective implementation of near-natural restoration in urban river channels.

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莫露清,杨扬,邰义萍,戴玉女,陶然,张晓萌,余佰伦,张杰,区廷哲,李明,禤倩红,朱文玲,周新民,黄家俊.城市河流近自然修复过程中附着藻类群落恢复与环境驱动机制.湖泊科学,2025,37(6):1926-1937. Mo Luqing, Yang Yang, Tai Yiping, Dai Yunv, Tao Ran, Zhang Xiaomeng, Yu Bailun, Zhang Jie, Ou Tingzhe, Li Ming, Xuan Qianhong, Zhu Wenling, Zhou Xinmin, Huang Jiajun. Recovery and environmental driving mechanisms of attached algae communities during the near-natural restoration of urban rivers. Journal of Lake Sciences,2025,37(6):1926-1937. DOI:10.18307/2025.0614

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History
  • Received:January 14,2025
  • Revised:March 24,2025
  • Adopted:
  • Online: November 03,2025
  • Published:
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