4.6 Article

Spatiotemporal Distribution Pattern of Phytoplankton Community and Its Main Driving Factors in Dongting Lake, China-A Seasonal Study from 2017 to 2019

Journal

WATER
Volume 14, Issue 11, Pages -

Publisher

MDPI
DOI: 10.3390/w14111674

Keywords

Dongting Lake; phytoplankton community; water quality; biodiversity; driving factors

Funding

  1. Three Gorges Follow-up Research Project [2017HXXY-05]
  2. special project of the Chinese Research Academy of Environmental Sciences [2020-JY-009]

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The water quality of Dongting Lake has improved in recent years, with increased dissolved oxygen concentration and decreased concentrations of various pollutants. The density and composition of phytoplankton in the lake have also changed, influenced by multiple factors.
As it is the second-largest freshwater lake downstream of the Three Gorges Dam and an important international wetland for migratory birds, there have been concerns about the ecological water health of Dongting Lake for a long time. In the present study, we studied the evolutionary characteristics of water quality in Dongting Lake in three recent years. Moreover, the evolution rules and dominant groups of the phytoplankton community were explored, and the major influencing factors of phytoplankton and their distribution were assessed based on the field survey and detection data from 2017 to 2019. The results indicated that the water quality of Dongting Lake improved in recent years. The concentration of dissolved oxygen (DO) increased by 6.91%, whereas the concentrations of the five-day biochemical oxygen demand (BOD5), chemical oxygen demand (CODCr), ammonia nitrogen (NH4+-N), total phosphorus (TP), and total nitrogen (TN) decreased by 17.5%, 13.0%, 33.8%, 7.6%, and 13.3%, respectively. The mean phytoplankton density reached 4.15 x 10(5) cells center dot L-1 in September 2017, whereas it was only 1.62 x 10(5) cells center dot L-1 in December 2018. There were 15 dominant species belonging to Cyanobacteria, Chlorophyta, Bacillariophyta, Cryptophyta, and Miozoa. Moreover, Fragilaria radians (Kutzing) D.M.Williams & Round and Aulacoseira granulata (Ehrenberg) Simonsen were the dominant populations in all seasons. The Pearson and linear regression analysis also indicated that the composition and distribution of phytoplankton in Dongting Lake were mainly affected by electrical conductivity (Cond), BOD5, potassium permanganate (CODMn), and CODCr, especially in Eastern Dongting Lake. Of course, NH4+-N, TN, and TP were also the main factors affecting the density and species of the phytoplankton community, especially in Western Dongting Lake. Finally, we suggested that local government could take The relationship between Yangtze River and Dongting Lake, The relationship between the seven fed rivers and Dongting Lake, and The relationship between human activities and Dongting Lake as the breakthrough points to guarantee the ecological flow, water environment, and ecological quality of Dongting Lake.

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