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Evolution of the Lake Taihu Aquatic Ecosystem over a 14-Year Period of External Load Reduction

delete2026-03-22
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PRE
AI
K
Kai Yu
D
Dandan Li
Z
Ziwu Fan
DOI:10.3390/d18030193delete
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Abstract

Abstract

En 中文
As a representative large shallow freshwater lake in China, Lake Taihu has suffered from persistent cyanobacterial blooms for a long time. Although intensive restoration actions have been carried out and caused visible improvements, the long-term evolution path and inner driving mechanisms of its ecosystem are still not fully made clear. Based on long-term monitoring data during 2011 to 2024, this study aims to characterize temporal dynamics of the aquatic environment, find out key drivers that shape community succession, and offer a scientific foundation for effective lake management. A series of data about hydrometeorological factors, physicochemical water quality indexes, and biological community data was analyzed by using the Mann-Kendall trend test, Pettitt change-point test, Redundancy Analysis, and correlation heatmaps. The results show that the Taihu ecosystem has experienced a notable regime shift in the past 14 years. First, nitrogenous nutrients reacted quickly to external emission reductions, showing a notable monotonic decline; in comparison, Total Phosphorus and Cyanobacterial Density followed a non-linear U-shaped path, with a notable shift happening in 2020, which marks the change from a deterioration phase to a recovery phase. Second, correlation analysis has confirmed that the lake is mainly phosphorus-limited, and a clear decoupling between nitrogen levels and algal outbreaks has taken place. Third, the 10-year Fishing Ban (initiated in 2020), together with sustained phosphorus control, reduced the competitive exclusion of phytoplankton by cyanobacteria, promoting the recent rebound in biodiversity. This study points out that Lake Taihu has passed a tipping point of ecological restoration, shifting from a turbid algae-dominated state to a stable state with higher biodiversity. Future management strategies should put first the mitigation of internal phosphorus loading and adaptive management against extreme climatic events.
Keywords:
cyanobacterial blooms
eutrophication
regime shift
phosphorus limitation
ecological restoration

Journal

D
Diversity-Basel
IF:
2.1
Papers:
441
Citations:
9.9K

Organization

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Nanjing Hydraulic Research Institute
Scholars:
2.0K
Papers: 1.7K
Citations: 2.3K
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