Scale-Dependent Effects of Riparian and Watershed Land Use on Water Quality and Fish Assemblages: Implications for Reservoir Ecosystem Management

Watershed land-use change is a major driver of freshwater ecosystem degradation, yet whether water quality and fish assemblages respond to land use at the same spatial scale remains poorly resolved. This study examined multi-scale land-use effects on both endpoints in Songhua Lake, a large reservoir in Northeast China. Water quality and fish assemblages were surveyed from 2020 to 2022 across seven inflowing sub-watersheds and five open-lake sites. Land-use composition was quantified at five spatial scales (200–2000 m riparian buffers and the sub-watershed), and redundancy analysis was used to assess scale-dependent associations. Water quality deteriorated along the disturbance gradient, with CODMn increasing by 33.9% and water quality index declining by 10.6% from low- to high-disturbance groups. RDA showed that water quality was best explained at the 200 m buffer (97.2%), with forest as the dominant predictor. In contrast, fish assemblage variation was best captured at the 2000 m buffer and sub-watershed scales (up to 99.96%), with urban land as the dominant predictor; β-diversity showed the strongest response (p < 0.001). These results reveal a scale mismatch between physicochemical and biological responses, indicating that effective reservoir management requires a dual-layer strategy combining riparian restoration for water quality with sub-watershed regulation of urbanization for fish conservation.

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Journal
Water
Published
2026-09-21
DOI
https://doi.org/10.3390/w18182351
Primary Topic
Fish Ecology and Management Studies
Type
article
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article

Scale-Dependent Effects of Riparian and Watershed Land Use on Water Quality and Fish Assemblages: Implications for Reservoir Ecosystem Management

Qiong Zhou, Yongjin Chen, Zhenfei Yu
Water
Fish Ecology and Management Studies
article

Scale-Dependent Effects of Riparian and Watershed Land Use on Water Quality and Fish Assemblages: Implications for Reservoir Ecosystem Management

Qiong Zhou, Yongjin Chen, Zhenfei Yu
article en

Abstract

Watershed land-use change is a major driver of freshwater ecosystem degradation, yet whether water quality and fish assemblages respond to land use at the same spatial scale remains poorly resolved. This study examined multi-scale land-use effects on both endpoints in Songhua Lake, a large reservoir in Northeast China. Water quality and fish assemblages were surveyed from 2020 to 2022 across seven inflowing sub-watersheds and five open-lake sites. Land-use composition was quantified at five spatial scales (200–2000 m riparian buffers and the sub-watershed), and redundancy analysis was used to assess scale-dependent associations. Water quality deteriorated along the disturbance gradient, with CODMn increasing by 33.9% and water quality index declining by 10.6% from low- to high-disturbance groups. RDA showed that water quality was best explained at the 200 m buffer (97.2%), with forest as the dominant predictor. In contrast, fish assemblage variation was best captured at the 2000 m buffer and sub-watershed scales (up to 99.96%), with urban land as the dominant predictor; β-diversity showed the strongest response (p < 0.001). These results reveal a scale mismatch between physicochemical and biological responses, indicating that effective reservoir management requires a dual-layer strategy combining riparian restoration for water quality with sub-watershed regulation of urbanization for fish conservation.

WaterVol. 18(18)
Huazhong Agricultural University (CN), Ministry of Agriculture and Rural Affairs (CN), Freshwater Fisheries Research Center (CN), Chinese Academy of Fishery Sciences (CN)
Sustainable cities and communities
Openalex Percentile: Top 8%
Fish Ecology and Management Studies
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Scale-Dependent Effects of Riparian and Watershed Land Use on Water Quality and Fish Assemblages: Implications for Reservoir Ecosystem Management — Qiong Zhou, Yongjin Chen, et al. · Water (2026) | TGRS Research Map | TGRS