Dam-induced mechanisms driving endangered fish species toward extinction: A landscape-scale habitat suitability framework for conservation
ID:73 View Protection:ATTENDEE Updated Time:2025-09-24 11:22:03 Hits:218 Oral Presentation

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Abstract
The degradation of the last remaining spawning grounds of the critically endangered Chinese sturgeon (Acipenser sinensis) exemplifies the global crisis of dam-induced riverine ecosystem degradation. By integrating geo-detector-weighted hydrodynamic parameters with landscape connectivity metrics, we develop a novel habitat suitability framework that quantifies previously overlooked mechanisms: First, hydrodynamic thresholds (e.g., turbulent intensity, depth, shear velocity) emerge as primary drivers of habitat selection, with parameter interactions amplifying explanation by 56.25% compared to single-factor assessments. Second, dam impoundment and channelization led to an 81.82% reduction in highly suitable habitat (2012 vs. 1999), driven by hydrological alteration, riverbed erosion and habitat fragmentation (patch density increased 91.50%, connectivity decreased 65.06%). These changes directly contributed to a 99.96% decline in egg density, forcing the species to shift to suboptimal upstream zones where reproduction ceased since 2013. To reverse these declines, we propose flow optimization (10,000-15,000 m³/s spawning season discharge) to manage turbulence thresholds and cobble rehabilitation to restore bathymetry conditions, strategies expected to restore 56.13-72.80% of Landscape-Integrated Geo-Detector Weighted Usable Area (WUAGL). This study fills critical gaps in traditional habitat models and provides a replicable framework for conserving dam-affected freshwater ecosystems through actionable, threshold-based management.
 
Keywords
sturgeon; Spawning ground; Eco-hydraulic modeling; Geo-detector approach; Landscape indices; Analytic hierarchy process; Habitat suitability model; Yangtze River
Speaker
班 璇
副研究员 中国科学院精密测量科学与技术创新研究院

Submission Author
班 璇 中国科学院精密测量科学与技术创新研究院
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Important Date
  • Conference Date

    Oct 19

    2025

    to

    Oct 25

    2025

  • Oct 19 2025

    Draft paper submission deadline

  • Oct 25 2025

    Registration deadline

Sponsored By
Wuhan University (WHU)
China Three Gorges University (CTGU)
China Three Gorges Corporation Limited (CTGC)
Aquatic Branch of the China Wildlife Conservation Association (ABCWCA)
The World Sturgeon Conservation Society (WSCS)
Organized By
Wuhan University (WHU)
China Three Gorges University (CTGU)
National Engineering Research Center for Eco-Environment in the Yangtze River Economic Belt (NECEYB)
China Fisheries Association (CFA)
The World Sturgeon Conservation Society (WSCS)
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