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Article

The Water-Sediment Regulation Scheme Drives Phytoplankton Dynamics in the Yellow River Estuary

1
College of Marine Living Resource Sciences and Management, Shanghai Ocean University, Shanghai 201306, China
2
The Institute for Advanced Study of Coastal Ecology, Ludong University, Yantai 264025, China
3
Shandong Provincial Key Laboratory of Restoration for Marine Ecology, Shandong Marine Resource and Environment Research Institute, Yantai 264006, China
4
China Communications Construction Water Transportation Consultants Co., Ltd., Beijing 100007, China
5
Architecture and Civil Engineering, Chalmers University of Technology, 412 96 Gothenburg, Sweden
*
Author to whom correspondence should be addressed.
Water 2026, 18(17), 2221; https://doi.org/10.3390/w18172221
Submission received: 9 August 2026 / Revised: 31 August 2026 / Accepted: 3 September 2026 / Published: 7 September 2026
(This article belongs to the Section Biodiversity and Functionality of Aquatic Ecosystems)

Abstract

The Water-Sediment Regulation Scheme (WSRS) of the Yellow River is a large-scale anthropogenic intervention designed to alleviate downstream channel siltation, yet its long-term ecological effects on estuarine phytoplankton communities remain contentious. Based on a 12-year (2011–2022) continuous monitoring dataset from the Yellow River Estuary (YRE), including two consecutive non-WSRS years (2016–2017) as a baseline, this study systematically analyzed the impacts of the WSRS on phytoplankton abundance, community structure, and dominant species succession, as well as the underlying regulatory mechanisms. Our results demonstrate that the WSRS significantly reduced salinity (p < 0.001) and delivered pulsed loads of dissolved inorganic nitrogen (DIN) and silicate (DSi), accounting for 11.64–40.63% of annual fluxes, while intensifying phosphorus-limited stoichiometric imbalance (DIN/DIP mean: 361.67 ± 124.57). Phytoplankton abundance exhibited extreme interannual fluctuations during WSRS years, with an annual mean abundance (957.08 × 104 cells/m3) nearly six times higher than that of non-WSRS years (165.88 × 104 cells/m3), and displayed a distinct nearshore inhibition and offshore stimulation spatial pattern, with the transition zone corresponding to the salinity front zone. At the community level, the WSRS did not alter the absolute dominance of diatoms but drove a directional succession from larger centric diatoms toward small, needle-shaped, low-salinity-tolerant species (Synedra sp., Nitzschia delicatissima); this shift is co-regulated by bottom-up environmental filtering (low salinity and high nutrients) and top-down size-selective grazing. This study reveals the net enhancing effect of the WSRS as a pulsed anthropogenic disturbance on estuarine phytoplankton communities and its dual regulatory mechanisms, providing long-term empirical evidence and a theoretical basis for ecological impact assessment and the adaptive management of large-scale river regulation projects.
Keywords: water-sediment regulation scheme; yellow river estuary; phytoplankton; long-term monitoring; community structure; bottom-up effects; top-down effects water-sediment regulation scheme; yellow river estuary; phytoplankton; long-term monitoring; community structure; bottom-up effects; top-down effects

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MDPI and ACS Style

Zhang, S.; Zhang, X.; Shen, R.; Chen, S.; Qiao, W.; Li, F.; Gao, Y.; Zhang, J. The Water-Sediment Regulation Scheme Drives Phytoplankton Dynamics in the Yellow River Estuary. Water 2026, 18, 2221. https://doi.org/10.3390/w18172221

AMA Style

Zhang S, Zhang X, Shen R, Chen S, Qiao W, Li F, Gao Y, Zhang J. The Water-Sediment Regulation Scheme Drives Phytoplankton Dynamics in the Yellow River Estuary. Water. 2026; 18(17):2221. https://doi.org/10.3390/w18172221

Chicago/Turabian Style

Zhang, Sihan, Xiaomin Zhang, Ruiting Shen, Shihao Chen, Wenqi Qiao, Fan Li, Yanjie Gao, and Jingjing Zhang. 2026. "The Water-Sediment Regulation Scheme Drives Phytoplankton Dynamics in the Yellow River Estuary" Water 18, no. 17: 2221. https://doi.org/10.3390/w18172221

APA Style

Zhang, S., Zhang, X., Shen, R., Chen, S., Qiao, W., Li, F., Gao, Y., & Zhang, J. (2026). The Water-Sediment Regulation Scheme Drives Phytoplankton Dynamics in the Yellow River Estuary. Water, 18(17), 2221. https://doi.org/10.3390/w18172221

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