Phytoplankton community structure and driving factors of filamentous cyanobacteria dominance in south subtropical reservoirs: A case study of Dawangtan Reservoir, Guangxi
Author:
Affiliation:

1: Key Laboratory of Integrated Regulation and Resource Development on Shallow Lakes, Ministry of Education, College of Environment, Hohai University, Nanjing 210098 , P.R.China ;2:Dawangtan Reservoir Management, Guangxi Zhuang Autonomous Region, Nanning 530200 , P.R.China ;3:College of Civil Engineering and Architecture, Guangxi University, Nanning 530004 , P.R.China ;4:Guangxi Hydraulic Research Institute, Nanning 530023 , P.R.China

Clc Number:

Fund Project:

  • Article
  • |
  • Figures
  • |
  • Metrics
  • |
  • Reference
  • |
  • Similar Literature
  • |
  • Cited by
  • |
  • Appendix
  • |
  • Comments
    Abstract:

    Dawangtan Reservoir is a typical large drinking water source reservoir in the south subtropical region. Cyanobacterial dominance and algal blooms caused by eutrophication pose major threats to its water supply security. Understanding the characteristics of the phytoplankton community and the driving factors behind cyanobacterial dominance is of great significance for algal bloom prevention and the management of reservoir water supply safety. A quarterly investigation of the aquatic environment and phytoplankton community in the Dawanqtan Reservoir was conducted in 2021 to explore the seasonal dynamics of the phytoplankton community and the driving factors behind the dominance of filamentous cyanobacteria. The results indicated that the phytoplankton in Dawangtan Reservoir comprised 127 species from 7 phyla, with Chlorophyta, Bacillariophyta, and Cyanophyta being the dominant groups in terms of species composition, belonging to 26 functional groups. The phytoplankton cell density ranged from 1.2×106 to 430×106 cells/L, exhibiting the order of autumn > spring > winter > summer, while the biomass ranged from 0.14 to 51 mg/L, with the order of autumn > winter and spring > summer. The dominant genera wereLimnothrix andPseudanabaena, and the functional group S1 was the long-term dominant functional group. The comprehensive trophic level index (TLI) of the reservoir ranged between 36.02 and 49.57, indicating a mesotrophic state. Mantel tests and redundancy analysis (RDA) revealed that water temperature, transparency, and nitrogen concentration were significant explanatory variables influencing the dominance of filamentous cyanobacteria. The absolute dominance of filamentous cyanobacteria occurred in Autumn, characterized by lower transparency and nitrogen concentration but higher water temperature, representing a high-risk period for blooms ofLimnothrix andPseudanabaena. Combined with functional group analysis, the results indicate that the turbid environment of large reservoirs is an important factor promoting the dominance of filamentous cyanobacteria. In Autumn, water temperature and nutrient conditions fall within the optimal range for the growth ofLimnothrix andPseudanabaena, serving as key drivers for their massive proliferation. Given the threat posed by filamentous cyanobacteria such asLimnothrix andPseudanabaena, attention should be paid to the causes of increased turbidity and water color in reservoirs to improve water transparency and thereby limit the formation of filamentous cyanobacterial dominance.

    Reference
    Related
    Cited by
Get Citation

鲍航通,李一平,赵国理,李荣辉,朱雅,余敏,潘海平,王亚宁,王璨,王楚尔,黄旭升.南亚热带水库浮游植物群落特征及丝状蓝藻优势驱动因素研究:以广西大王滩水库为例[J]. Journal of Lake Sciences,2025,37(6):1897-1909.

Copy
Share
Article Metrics
  • Abstract:
  • PDF:
  • HTML:
  • Cited by:
History
  • Received:
  • Revised:
  • Adopted:
  • Online: November 03,2025
  • Published:
You are the first    Visitors
Address:No.299, Chuangzhan Road, Qilin Street, Jiangning District, Nanjing, China    Postal Code:211135
Phone:025-86882041;86882040     Fax:025-57714759     Email:jlakes@niglas.ac.cn
Copyright © Lake Science, Nanjing Institute of Geography and Lake Sciences, Chinese Academy of Sciences:All Rights Reserved
Technical Support:Beijing Qinyun Technology Development Co., Ltd.

Su Gongwang Security No. 11040202500063

     苏ICP备09024011号-2